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1 #LyX 1.6.0svn created this file. For more info see http://www.lyx.org/
2 \lyxformat 344
3 \begin_document
4 \begin_header
5 \textclass aastex
6 \begin_preamble
7 \newcommand{\vdag}{(v)^\dagger}
8 \newcommand{\myemail}{skywalker@galaxy.far.far.away}
9 \slugcomment{Not to appear in Nonlearned J., 45.}
10 \shorttitle{Djorgovski et al.}
11 \shortauthors{Collapsed Cores in Globular Clusters}
12 \end_preamble
13 \use_default_options false
14 \language english
15 \inputencoding default
16 \font_roman default
17 \font_sans default
18 \font_typewriter default
19 \font_default_family default
20 \font_sc false
21 \font_osf false
22 \font_sf_scale 100
23 \font_tt_scale 100
24
25 \graphics default
26 \paperfontsize default
27 \spacing single
28 \use_hyperref false
29 \papersize default
30 \use_geometry false
31 \use_amsmath 0
32 \use_esint 0
33 \cite_engine basic
34 \use_bibtopic false
35 \paperorientation portrait
36 \secnumdepth 3
37 \tocdepth 3
38 \paragraph_separation indent
39 \defskip medskip
40 \quotes_language english
41 \papercolumns 1
42 \papersides 1
43 \paperpagestyle default
44 \tracking_changes false
45 \output_changes false
46 \author "" 
47 \author "" 
48 \end_header
49
50 \begin_body
51
52 \begin_layout Title
53 Collapsed Cores in Globular Clusters,  Gauge-Boson Couplings, and AASTeX
54  Examples
55 \end_layout
56
57 \begin_layout Author
58 S.
59  Djorgovski
60 \begin_inset Flex altaffilmark
61 status open
62
63 \begin_layout Plain Layout
64 1,2,3
65 \end_layout
66
67 \end_inset
68
69  and Ivan R.
70  King
71 \begin_inset Flex altaffilmark
72 status collapsed
73
74 \begin_layout Plain Layout
75 1
76 \end_layout
77
78 \end_inset
79
80
81 \end_layout
82
83 \begin_layout Affiliation
84 Astronomy Department, University of California, Berkeley, CA 94720
85 \end_layout
86
87 \begin_layout Author
88 C.
89  D.
90  Biemesderfer
91 \begin_inset Flex altaffilmark
92 status collapsed
93
94 \begin_layout Plain Layout
95 4,5
96 \end_layout
97
98 \end_inset
99
100
101 \end_layout
102
103 \begin_layout Affiliation
104 National Optical Astronomy Observatories, Tucson, AZ 85719
105 \end_layout
106
107 \begin_layout Email
108 aastex-help@aas.org
109 \end_layout
110
111 \begin_layout And
112
113 \end_layout
114
115 \begin_layout Author
116 R.
117  J.
118  Hanisch
119 \begin_inset Flex altaffilmark
120 status collapsed
121
122 \begin_layout Plain Layout
123 5
124 \end_layout
125
126 \end_inset
127
128
129 \end_layout
130
131 \begin_layout Affiliation
132 Space Telescope Science Institute, Baltimore, MD 21218
133 \end_layout
134
135 \begin_layout Altaffilation
136 1
137 \begin_inset ERT
138 status collapsed
139
140 \begin_layout Plain Layout
141
142 }{
143 \end_layout
144
145 \end_inset
146
147 Visiting Astronomer, Cerro Tololo Inter-American Observatory.
148  CTIO is operated by AURA, Inc.
149 \begin_inset space \space{}
150 \end_inset
151
152 under contract to the National Science Foundation.
153 \end_layout
154
155 \begin_layout Altaffilation
156 2
157 \begin_inset ERT
158 status collapsed
159
160 \begin_layout Plain Layout
161
162 }{
163 \end_layout
164
165 \end_inset
166
167 Society of Fellows, Harvard University.
168 \end_layout
169
170 \begin_layout Altaffilation
171 3
172 \begin_inset ERT
173 status collapsed
174
175 \begin_layout Plain Layout
176
177 }{
178 \end_layout
179
180 \end_inset
181
182 present address: Center for Astrophysics, 60 Garden Street, Cambridge, MA
183  02138
184 \end_layout
185
186 \begin_layout Altaffilation
187 4
188 \begin_inset ERT
189 status collapsed
190
191 \begin_layout Plain Layout
192
193 }{
194 \end_layout
195
196 \end_inset
197
198 Visiting Programmer, Space Telescope Science Institute
199 \end_layout
200
201 \begin_layout Altaffilation
202 5
203 \begin_inset ERT
204 status collapsed
205
206 \begin_layout Plain Layout
207
208 }{
209 \end_layout
210
211 \end_inset
212
213 Patron, Alonso's Bar and Grill
214 \end_layout
215
216 \begin_layout Abstract
217 This is a preliminary report on surface photometry of the major fraction
218  of known globular clusters, to see which of them show the signs of a collapsed
219  core.
220  We also explore some diversionary mathematics and recreational tables.
221  
222 \end_layout
223
224 \begin_layout Keywords
225 clusters: globular, peanut---bosons: bozos
226 \end_layout
227
228 \begin_layout Section
229 Introduction
230 \end_layout
231
232 \begin_layout Standard
233 A focal problem today in the dynamics of globular clusters is core collapse.
234  It has been predicted by theory for decades 
235 \begin_inset ERT
236 status collapsed
237
238 \begin_layout Plain Layout
239
240
241 \backslash
242 citep{hen61,lyn68,spi85}
243 \end_layout
244
245 \end_inset
246
247 , but observation has been less alert to the phenomenon.
248  For many years the central brightness peak in M15 
249 \begin_inset ERT
250 status collapsed
251
252 \begin_layout Plain Layout
253
254
255 \backslash
256 citep{kin75,new78}
257 \end_layout
258
259 \end_inset
260
261  seemed a unique anomaly.
262  Then 
263 \begin_inset ERT
264 status collapsed
265
266 \begin_layout Plain Layout
267
268
269 \backslash
270 citet{aur82}
271 \end_layout
272
273 \end_inset
274
275  suggested a central peak in NGC 6397, and a limited photographic survey
276  of ours 
277 \begin_inset ERT
278 status collapsed
279
280 \begin_layout Plain Layout
281
282
283 \backslash
284 citep[Paper I]{djo84}
285 \end_layout
286
287 \end_inset
288
289  found three more cases, including NGC 6624, whose sharp center had often
290  been remarked on 
291 \begin_inset ERT
292 status collapsed
293
294 \begin_layout Plain Layout
295
296
297 \backslash
298 citep{can78}
299 \end_layout
300
301 \end_inset
302
303 .
304  
305 \end_layout
306
307 \begin_layout Section
308 Observations
309 \end_layout
310
311 \begin_layout Standard
312 All our observations were short direct exposures with CCD's.
313  At Lick Observatory we used a TI 500
314 \begin_inset Formula $\times$
315 \end_inset
316
317 500 chip and a GEC 575
318 \begin_inset Formula $\times$
319 \end_inset
320
321 385, on the 1-m Nickel reflector.
322  The only filter available at Lick was red.
323  At CTIO we used a GEC 575
324 \begin_inset Formula $\times$
325 \end_inset
326
327 385, with 
328 \begin_inset Formula $B,V,$
329 \end_inset
330
331  and 
332 \begin_inset Formula $R$
333 \end_inset
334
335  filters, and an RCA 512
336 \begin_inset Formula $\times$
337 \end_inset
338
339 320, with 
340 \begin_inset Formula $U,B,V,R,$
341 \end_inset
342
343  and 
344 \begin_inset Formula $I$
345 \end_inset
346
347  filters, on the 1.5-m reflector.
348  In the CTIO observations we tried to concentrate on the shortest practicable
349  wavelengths; but faintness, reddening, and poor short-wavelength sensitivity
350  often kept us from observing in 
351 \begin_inset Formula $U$
352 \end_inset
353
354  or even in 
355 \begin_inset Formula $B$
356 \end_inset
357
358 .
359  All four cameras had scales of the order of 0.4 arcsec/pixel, and our field
360  sizes were around 3 arcmin.
361 \end_layout
362
363 \begin_layout Standard
364 The CCD images are unfortunately not always suitable, for very poor clusters
365  or for clusters with large cores.
366  Since the latter are easily studied by other means, we augmented our own
367  CCD profiles by collecting from the literature a number of star-count profiles
368  
369 \begin_inset ERT
370 status collapsed
371
372 \begin_layout Plain Layout
373
374
375 \backslash
376 citep{kin68,pet76,har84,ort85}
377 \end_layout
378
379 \end_inset
380
381 , as well as photoelectric profiles 
382 \begin_inset ERT
383 status collapsed
384
385 \begin_layout Plain Layout
386
387
388 \backslash
389 citep{kin66,kin75}
390 \end_layout
391
392 \end_inset
393
394  and electronographic profiles 
395 \begin_inset ERT
396 status collapsed
397
398 \begin_layout Plain Layout
399
400
401 \backslash
402 citep{kro84}
403 \end_layout
404
405 \end_inset
406
407 .
408  In a few cases we judged normality by eye estimates on one of the Sky Surveys.
409 \end_layout
410
411 \begin_layout Section
412 Helicity Amplitudes
413 \end_layout
414
415 \begin_layout Standard
416 It has been realized that helicity amplitudes provide a convenient means
417  for Feynman diagram
418 \begin_inset Foot
419 status collapsed
420
421 \begin_layout Plain Layout
422 Footnotes can be inserted like this.
423 \end_layout
424
425 \end_inset
426
427  evaluations.
428  These amplitude-level techniques are particularly convenient for calculations
429  involving many Feynman diagrams, where the usual trace techniques for the
430  amplitude squared becomes unwieldy.
431  Our calculations use the helicity techniques developed by other authors
432  
433 \begin_inset CommandInset citation
434 LatexCommand cite
435 key "hag86"
436
437 \end_inset
438
439 ; we briefly summarize below.
440 \end_layout
441
442 \begin_layout Subsection
443 Formalism
444 \end_layout
445
446 \begin_layout Standard
447 \begin_inset CommandInset label
448 LatexCommand label
449 name "bozomath"
450
451 \end_inset
452
453
454 \end_layout
455
456 \begin_layout Standard
457 A tree-level amplitude in 
458 \begin_inset Formula $e^{+}e^{-}$
459 \end_inset
460
461  collisions can be expressed in terms of fermion strings of the form 
462 \begin_inset Formula \begin{equation}
463 \bar{v}(p_{2},\sigma_{2})P_{-\tau}\hat{a}_{1}\hat{a}_{2}\cdots\hat{a}_{n}u(p_{1},\sigma_{1}),\end{equation}
464
465 \end_inset
466
467  where 
468 \begin_inset Formula $p$
469 \end_inset
470
471  and 
472 \begin_inset Formula $\sigma$
473 \end_inset
474
475  label the initial 
476 \begin_inset Formula $e^{\pm}$
477 \end_inset
478
479  four-momenta and helicities 
480 \begin_inset Formula $(\sigma=\pm1)$
481 \end_inset
482
483
484 \begin_inset Formula $\hat{a}_{i}=a_{i}^{\mu}\gamma_{\nu}$
485 \end_inset
486
487  and 
488 \begin_inset Formula $P_{\tau}=\frac{1}{2}(1+\tau\gamma_{5})$
489 \end_inset
490
491  is a chirality projection operator 
492 \begin_inset Formula $(\tau=\pm1)$
493 \end_inset
494
495 .
496  The 
497 \begin_inset Formula $a_{i}^{\mu}$
498 \end_inset
499
500  may be formed from particle four-momenta, gauge-boson polarization vectors
501  or fermion strings with an uncontracted Lorentz index associated with final-sta
502 te fermions.
503 \end_layout
504
505 \begin_layout NoteToEditor
506 Figures 1 and 2 should appear side-by-side in print
507 \end_layout
508
509 \begin_layout Standard
510 In the chiral representation the 
511 \begin_inset Formula $\gamma$
512 \end_inset
513
514  matrices are expressed in terms of 
515 \begin_inset Formula $2\times2$
516 \end_inset
517
518  Pauli matrices 
519 \begin_inset Formula $\sigma$
520 \end_inset
521
522  and the unit matrix 1 as 
523 \begin_inset Formula \begin{eqnarray*}
524 \gamma^{\mu} & = & \left(\begin{array}{cc}
525 0 & \sigma_{+}^{\mu}\\
526 \sigma_{-}^{\mu} & 0\end{array}\right),\gamma^{5}=\left(\begin{array}{cc}
527 -1 & 0\\
528 0 & 1\end{array}\right),\\
529 \sigma_{\pm}^{\mu} & = & ({\textbf{1}},\pm\sigma),\end{eqnarray*}
530
531 \end_inset
532
533  giving 
534 \begin_inset Formula \begin{equation}
535 \hat{a}=\left(\begin{array}{cc}
536 0 & (\hat{a})_{+}\\
537 (\hat{a})_{-} & 0\end{array}\right),(\hat{a})_{\pm}=a_{\mu}\sigma_{\pm}^{\mu},\end{equation}
538
539 \end_inset
540
541  The spinors are expressed in terms of two-component Weyl spinors as 
542 \begin_inset Formula \begin{equation}
543 u=\left(\begin{array}{c}
544 (u)_{-}\\
545 (u)_{+}\end{array}\right),v={\textbf{(}}\vdag_{+}{\textbf{,}}\vdag_{-}{\textbf{)}}.\end{equation}
546
547 \end_inset
548
549
550 \end_layout
551
552 \begin_layout Standard
553 The Weyl spinors are given in terms of helicity eigenstates 
554 \begin_inset Formula $\chi_{\lambda}(p)$
555 \end_inset
556
557  with 
558 \begin_inset Formula $\lambda=\pm1$
559 \end_inset
560
561  by 
562 \end_layout
563
564 \begin_layout MathLetters
565 \begin_inset Formula \begin{eqnarray}
566 u(p,\lambda)_{\pm} & = & (E\pm\lambda|{\textbf{p}}|)^{1/2}\chi_{\lambda}(p),\\
567 v(p,\lambda)_{\pm} & = & \pm\lambda(E\mp\lambda|{\textbf{p}}|)^{1/2}\chi_{-\lambda}(p)\end{eqnarray}
568
569 \end_inset
570
571
572 \end_layout
573
574 \begin_layout Section
575 Floating material and so forth
576 \end_layout
577
578 \begin_layout Standard
579 Consider a task that computes profile parameters for a modified Lorentzian
580  of the form 
581 \begin_inset Formula \begin{equation}
582 I=\frac{1}{1+d_{1}^{P(1+d_{2})}}\end{equation}
583
584 \end_inset
585
586  where 
587 \begin_inset Formula \[
588 d_{1}=\sqrt{\left(\begin{array}{c}
589 \frac{x_{1}}{R_{maj}}\end{array}\right)^{2}+\left(\begin{array}{c}
590 \frac{y_{1}}{R_{min}}\end{array}\right)^{2}}\]
591
592 \end_inset
593
594
595 \begin_inset Formula \[
596 d_{2}=\sqrt{\left(\begin{array}{c}
597 \frac{x_{1}}{PR_{maj}}\end{array}\right)^{2}+\left(\begin{array}{c}
598 \case{y_{1}}{PR_{min}}\end{array}\right)^{2}}\]
599
600 \end_inset
601
602
603 \begin_inset Formula \[
604 x_{1}=(x-x_{0})\cos\Theta+(y-y_{0})\sin\Theta\]
605
606 \end_inset
607
608
609 \begin_inset Formula \[
610 y_{1}=-(x-x_{0})\sin\Theta+(y-y_{0})\cos\Theta\]
611
612 \end_inset
613
614
615 \end_layout
616
617 \begin_layout Standard
618 In these expressions 
619 \begin_inset Formula $x_{0}$
620 \end_inset
621
622 ,
623 \begin_inset Formula $y_{0}$
624 \end_inset
625
626  is the star center, and 
627 \begin_inset Formula $\Theta$
628 \end_inset
629
630  is the angle with the 
631 \begin_inset Formula $x$
632 \end_inset
633
634  axis.
635  Results of this task are shown in table
636 \begin_inset space ~
637 \end_inset
638
639
640 \begin_inset CommandInset ref
641 LatexCommand ref
642 reference "tbl-2"
643
644 \end_inset
645
646 .
647  It is not clear how these sorts of analyses may affect determination of
648  
649 \begin_inset Formula $M_{\sun}$
650 \end_inset
651
652 , but the assumption is that the alternate results should be less than 90°
653  out of phase with previous values.
654  We have no observations of 
655 \begin_inset ERT
656 status collapsed
657
658 \begin_layout Plain Layout
659
660
661 \backslash
662 ion{Ca}{2}
663 \end_layout
664
665 \end_inset
666
667 .
668  Roughly 
669 \begin_inset ERT
670 status collapsed
671
672 \begin_layout Plain Layout
673
674
675 \backslash
676 slantfrac{4}{5}
677 \end_layout
678
679 \end_inset
680
681  of the electronically submitted abstracts for AAS meetings are error-free.
682 \end_layout
683
684 \begin_layout Acknowledgements
685
686 \end_layout
687
688 \begin_layout Standard
689 We are grateful to V.
690  Barger, T.
691  Han, and R.
692  J.
693  N.
694  Phillips for doing the math in section
695 \begin_inset space ~
696 \end_inset
697
698
699 \begin_inset CommandInset ref
700 LatexCommand ref
701 reference "bozomath"
702
703 \end_inset
704
705 .
706  More information on the AASTeX macros package are available at 
707 \begin_inset Flex URL
708 status collapsed
709
710 \begin_layout Plain Layout
711
712 http://www.aas.org/publications/aastex
713 \end_layout
714
715 \end_inset
716
717  or the 
718 \begin_inset ERT
719 status collapsed
720
721 \begin_layout Plain Layout
722
723
724 \backslash
725 anchor{ftp://www.aas.org/pubs/}{AAS ftp site}
726 \end_layout
727
728 \end_inset
729
730 .
731 \end_layout
732
733 \begin_layout Appendix
734
735 \end_layout
736
737 \begin_layout Section
738 Appendicial material
739 \end_layout
740
741 \begin_layout Standard
742 Consider once again a task that computes profile parameters for a modified
743  Lorentzian of the form 
744 \begin_inset Formula \begin{equation}
745 I=\frac{1}{1+d_{1}^{P(1+d_{2})}}\end{equation}
746
747 \end_inset
748
749  where 
750 \end_layout
751
752 \begin_layout MathLetters
753 \begin_inset Formula \[
754 d_{1}=\frac{3}{4}\sqrt{\left(\begin{array}{c}
755 \frac{x_{1}}{R_{maj}}\end{array}\right)^{2}+\left(\begin{array}{c}
756 \frac{y_{1}}{R_{min}}\end{array}\right)^{2}}\]
757
758 \end_inset
759
760
761 \begin_inset Formula \begin{equation}
762 d_{2}=\case{3}{4}\sqrt{\left(\begin{array}{c}
763 \frac{x_{1}}{PR_{maj}}\end{array}\right)^{2}+\left(\begin{array}{c}
764 \case{y_{1}}{PR_{min}}\end{array}\right)^{2}}\end{equation}
765
766 \end_inset
767
768
769 \begin_inset Formula \begin{eqnarray}
770 x_{1} & = & (x-x_{0})\cos\Theta+(y-y_{0})\sin\Theta\\
771 y_{1} & = & -(x-x_{0})\sin\Theta+(y-y_{0})\cos\Theta\end{eqnarray}
772
773 \end_inset
774
775
776 \end_layout
777
778 \begin_layout Standard
779 For completeness, here is one last equation.
780  
781 \begin_inset Formula \begin{equation}
782 e=mc^{2}\end{equation}
783
784 \end_inset
785
786
787 \end_layout
788
789 \begin_layout References
790 \begin_inset CommandInset bibitem
791 LatexCommand bibitem
792 label "Auri\\`ere(1982)"
793 key "aur82"
794
795 \end_inset
796
797 Aurière, M.
798  1982, 
799 \begin_inset ERT
800 status collapsed
801
802 \begin_layout Plain Layout
803
804
805 \backslash
806 aap
807 \end_layout
808
809 \end_inset
810
811 , 109, 301 
812 \end_layout
813
814 \begin_layout References
815 \begin_inset CommandInset bibitem
816 LatexCommand bibitem
817 label "Canizares et al.(1978)"
818 key "can78"
819
820 \end_inset
821
822 Canizares, C.
823  R., Grindlay, J.
824  E., Hiltner, W.
825  A., Liller, W., and McClintock, J.
826  E.
827  1978, 
828 \begin_inset ERT
829 status collapsed
830
831 \begin_layout Plain Layout
832
833
834 \backslash
835 apj
836 \end_layout
837
838 \end_inset
839
840 , 224, 39 
841 \end_layout
842
843 \begin_layout References
844 \begin_inset CommandInset bibitem
845 LatexCommand bibitem
846 label "Djorgovski and King(1984)"
847 key "djo84"
848
849 \end_inset
850
851 Djorgovski, S., and King, I.
852  R.
853  1984, 
854 \begin_inset ERT
855 status collapsed
856
857 \begin_layout Plain Layout
858
859
860 \backslash
861 apjl
862 \end_layout
863
864 \end_inset
865
866 , 277, L49 
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915 Hénon, M.
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927 King, I.
928  R.
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931 status collapsed
932
933 \begin_layout Plain Layout
934
935
936 \backslash
937 aj
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939
940 \end_inset
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942 , 71, 276 
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953 King, I.
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967 King, I.
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970  E.
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1005
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1010 \end_inset
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1012 , 96, 198 
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1023 Lynden-Bell, D., and Wood, R.
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1028 \begin_layout Plain Layout
1029
1030
1031 \backslash
1032 mnras
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1034
1035 \end_inset
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1037 , 138, 495 
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1048 Newell, E.
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1054
1055 \begin_layout Plain Layout
1056
1057
1058 \backslash
1059 apjs
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1061
1062 \end_inset
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1064 , 37, 27 
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1066
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1074
1075 Ortolani, S., Rosino, L., and Sandage, A.
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1079
1080 \begin_layout Plain Layout
1081
1082
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1084 aj
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1086
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1088
1089 , 90, 473 
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1100 Peterson, C.
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1107
1108
1109 \backslash
1110 aj
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1112
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1115 , 81, 617 
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1124 \end_inset
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1126 Spitzer, L.
1127  1985, Dynamics of Star Clusters, J.
1128  Goodman and P.
1129  Hut, Dordrecht: Reidel, 109 
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1759 <cell alignment="right" valignment="top" usebox="none">
1760 \begin_inset Text
1761
1762 \begin_layout Plain Layout
1763 -40.272
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1765
1766 \end_inset
1767 </cell>
1768 <cell alignment="right" valignment="top" usebox="none">
1769 \begin_inset Text
1770
1771 \begin_layout Plain Layout
1772 4
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1774
1775 \end_inset
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1781
1782 \begin_layout Plain Layout
1783  4 
1784 \end_layout
1785
1786 \end_inset
1787 </cell>
1788 <cell alignment="right" valignment="top" usebox="none">
1789 \begin_inset Text
1790
1791 \begin_layout Plain Layout
1792 32733.8 
1793 \end_layout
1794
1795 \end_inset
1796 </cell>
1797 <cell alignment="right" valignment="top" usebox="none">
1798 \begin_inset Text
1799
1800 \begin_layout Plain Layout
1801 -1.2
1802 \begin_inset Flex tablenotemark
1803 status open
1804
1805 \begin_layout Plain Layout
1806 c
1807 \end_layout
1808
1809 \end_inset
1810
1811
1812 \end_layout
1813
1814 \end_inset
1815 </cell>
1816 <cell alignment="right" valignment="top" usebox="none">
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1818
1819 \begin_layout Plain Layout
1820 -0.5 
1821 \end_layout
1822
1823 \end_inset
1824 </cell>
1825 <cell alignment="right" valignment="top" usebox="none">
1826 \begin_inset Text
1827
1828 \begin_layout Plain Layout
1829 41 
1830 \end_layout
1831
1832 \end_inset
1833 </cell>
1834 <cell alignment="right" valignment="top" usebox="none">
1835 \begin_inset Text
1836
1837 \begin_layout Plain Layout
1838 54.8 
1839 \end_layout
1840
1841 \end_inset
1842 </cell>
1843 <cell alignment="right" valignment="top" usebox="none">
1844 \begin_inset Text
1845
1846 \begin_layout Plain Layout
1847 2.282 
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1849
1850 \end_inset
1851 </cell>
1852 <cell alignment="right" valignment="top" usebox="none">
1853 \begin_inset Text
1854
1855 \begin_layout Plain Layout
1856 2.156 
1857 \end_layout
1858
1859 \end_inset
1860 </cell>
1861 <cell alignment="right" valignment="top" usebox="none">
1862 \begin_inset Text
1863
1864 \begin_layout Plain Layout
1865 4.313 
1866 \end_layout
1867
1868 \end_inset
1869 </cell>
1870 <cell alignment="right" valignment="top" usebox="none">
1871 \begin_inset Text
1872
1873 \begin_layout Plain Layout
1874 117.4 
1875 \end_layout
1876
1877 \end_inset
1878 </cell>
1879 <cell alignment="right" valignment="top" usebox="none">
1880 \begin_inset Text
1881
1882 \begin_layout Plain Layout
1883 78.2 
1884 \end_layout
1885
1886 \end_inset
1887 </cell>
1888 <cell alignment="right" valignment="top" usebox="none">
1889 \begin_inset Text
1890
1891 \begin_layout Plain Layout
1892 -35.847
1893 \end_layout
1894
1895 \end_inset
1896 </cell>
1897 <cell alignment="right" valignment="top" usebox="none">
1898 \begin_inset Text
1899
1900 \begin_layout Plain Layout
1901 5,6
1902 \end_layout
1903
1904 \end_inset
1905 </cell>
1906 </row>
1907 <row>
1908 <cell alignment="center" valignment="top" usebox="none">
1909 \begin_inset Text
1910
1911 \begin_layout Plain Layout
1912  5 
1913 \end_layout
1914
1915 \end_inset
1916 </cell>
1917 <cell alignment="right" valignment="top" usebox="none">
1918 \begin_inset Text
1919
1920 \begin_layout Plain Layout
1921  9607.4 
1922 \end_layout
1923
1924 \end_inset
1925 </cell>
1926 <cell alignment="right" valignment="top" usebox="none">
1927 \begin_inset Text
1928
1929 \begin_layout Plain Layout
1930 -0.4 
1931 \end_layout
1932
1933 \end_inset
1934 </cell>
1935 <cell alignment="right" valignment="top" usebox="none">
1936 \begin_inset Text
1937
1938 \begin_layout Plain Layout
1939 -0.4 
1940 \end_layout
1941
1942 \end_inset
1943 </cell>
1944 <cell alignment="right" valignment="top" usebox="none">
1945 \begin_inset Text
1946
1947 \begin_layout Plain Layout
1948 60 
1949 \end_layout
1950
1951 \end_inset
1952 </cell>
1953 <cell alignment="right" valignment="top" usebox="none">
1954 \begin_inset Text
1955
1956 \begin_layout Plain Layout
1957 1.4 
1958 \end_layout
1959
1960 \end_inset
1961 </cell>
1962 <cell alignment="right" valignment="top" usebox="none">
1963 \begin_inset Text
1964
1965 \begin_layout Plain Layout
1966 1.669
1967 \begin_inset Flex tablenotemark
1968 status collapsed
1969
1970 \begin_layout Plain Layout
1971 c
1972 \end_layout
1973
1974 \end_inset
1975
1976
1977 \end_layout
1978
1979 \end_inset
1980 </cell>
1981 <cell alignment="right" valignment="top" usebox="none">
1982 \begin_inset Text
1983
1984 \begin_layout Plain Layout
1985 1.574 
1986 \end_layout
1987
1988 \end_inset
1989 </cell>
1990 <cell alignment="right" valignment="top" usebox="none">
1991 \begin_inset Text
1992
1993 \begin_layout Plain Layout
1994 2.343 
1995 \end_layout
1996
1997 \end_inset
1998 </cell>
1999 <cell alignment="right" valignment="top" usebox="none">
2000 \begin_inset Text
2001
2002 \begin_layout Plain Layout
2003 8.0 
2004 \end_layout
2005
2006 \end_inset
2007 </cell>
2008 <cell alignment="right" valignment="top" usebox="none">
2009 \begin_inset Text
2010
2011 \begin_layout Plain Layout
2012 8.9 
2013 \end_layout
2014
2015 \end_inset
2016 </cell>
2017 <cell alignment="right" valignment="top" usebox="none">
2018 \begin_inset Text
2019
2020 \begin_layout Plain Layout
2021 -33.417
2022 \end_layout
2023
2024 \end_inset
2025 </cell>
2026 <cell alignment="right" valignment="top" usebox="none">
2027 \begin_inset Text
2028
2029 \begin_layout Plain Layout
2030 7
2031 \end_layout
2032
2033 \end_inset
2034 </cell>
2035 </row>
2036 <row>
2037 <cell alignment="center" valignment="top" usebox="none">
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2039
2040 \begin_layout Plain Layout
2041  6 
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2043
2044 \end_inset
2045 </cell>
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2047 \begin_inset Text
2048
2049 \begin_layout Plain Layout
2050 31638.6 
2051 \end_layout
2052
2053 \end_inset
2054 </cell>
2055 <cell alignment="right" valignment="top" usebox="none">
2056 \begin_inset Text
2057
2058 \begin_layout Plain Layout
2059 1.6 
2060 \end_layout
2061
2062 \end_inset
2063 </cell>
2064 <cell alignment="right" valignment="top" usebox="none">
2065 \begin_inset Text
2066
2067 \begin_layout Plain Layout
2068 0.1 
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2070
2071 \end_inset
2072 </cell>
2073 <cell alignment="right" valignment="top" usebox="none">
2074 \begin_inset Text
2075
2076 \begin_layout Plain Layout
2077 39 
2078 \end_layout
2079
2080 \end_inset
2081 </cell>
2082 <cell alignment="right" valignment="top" usebox="none">
2083 \begin_inset Text
2084
2085 \begin_layout Plain Layout
2086 315.2 
2087 \end_layout
2088
2089 \end_inset
2090 </cell>
2091 <cell alignment="right" valignment="top" usebox="none">
2092 \begin_inset Text
2093
2094 \begin_layout Plain Layout
2095  3.433 
2096 \end_layout
2097
2098 \end_inset
2099 </cell>
2100 <cell alignment="right" valignment="top" usebox="none">
2101 \begin_inset Text
2102
2103 \begin_layout Plain Layout
2104 3.075 
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2106
2107 \end_inset
2108 </cell>
2109 <cell alignment="right" valignment="top" usebox="none">
2110 \begin_inset Text
2111
2112 \begin_layout Plain Layout
2113 7.488 
2114 \end_layout
2115
2116 \end_inset
2117 </cell>
2118 <cell alignment="right" valignment="top" usebox="none">
2119 \begin_inset Text
2120
2121 \begin_layout Plain Layout
2122 92.1 
2123 \end_layout
2124
2125 \end_inset
2126 </cell>
2127 <cell alignment="right" valignment="top" usebox="none">
2128 \begin_inset Text
2129
2130 \begin_layout Plain Layout
2131 25.3 
2132 \end_layout
2133
2134 \end_inset
2135 </cell>
2136 <cell alignment="right" valignment="top" usebox="none">
2137 \begin_inset Text
2138
2139 \begin_layout Plain Layout
2140 -12.052 
2141 \end_layout
2142
2143 \end_inset
2144 </cell>
2145 <cell alignment="right" valignment="top" usebox="none">
2146 \begin_inset Text
2147
2148 \begin_layout Plain Layout
2149 8
2150 \end_layout
2151
2152 \end_inset
2153 </cell>
2154 </row>
2155 </lyxtabular>
2156
2157 \end_inset
2158
2159
2160 \end_layout
2161
2162 \begin_layout Table note
2163 a
2164 \begin_inset ERT
2165 status collapsed
2166
2167 \begin_layout Plain Layout
2168
2169 }{
2170 \end_layout
2171
2172 \end_inset
2173
2174 Sample footnote for table
2175 \begin_inset space ~
2176 \end_inset
2177
2178
2179 \begin_inset CommandInset ref
2180 LatexCommand ref
2181 reference "tbl-2"
2182
2183 \end_inset
2184
2185  that was generated with the LaTeX table environment
2186 \end_layout
2187
2188 \begin_layout Table note
2189 b
2190 \begin_inset ERT
2191 status collapsed
2192
2193 \begin_layout Plain Layout
2194
2195 }{
2196 \end_layout
2197
2198 \end_inset
2199
2200 Yet another sample footnote for table
2201 \begin_inset space ~
2202 \end_inset
2203
2204
2205 \begin_inset CommandInset ref
2206 LatexCommand ref
2207 reference "tbl-2"
2208
2209 \end_inset
2210
2211
2212 \end_layout
2213
2214 \begin_layout Table note
2215 c
2216 \begin_inset ERT
2217 status collapsed
2218
2219 \begin_layout Plain Layout
2220
2221 }{
2222 \end_layout
2223
2224 \end_inset
2225
2226 Another sample footnote for table
2227 \begin_inset space ~
2228 \end_inset
2229
2230
2231 \begin_inset CommandInset ref
2232 LatexCommand ref
2233 reference "tbl-2"
2234
2235 \end_inset
2236
2237
2238 \end_layout
2239
2240 \begin_layout TableComments
2241 We can also attach a long-ish paragraph of explanatory material to a table.
2242  Use 
2243 \backslash
2244 tablerefs to append a list of references.
2245  The following references were from a different table: I've patched them
2246  in here to show how they look, but don't take them too seriously---I certainly
2247  have not.
2248 \end_layout
2249
2250 \begin_layout TableRefs
2251 (1) Barbuy, Spite, & Spite 1985; (2) Bond 1980; (3) Carbon et al.
2252  1987; (4) Hobbs & Duncan 1987; (5) Gilroy et al.
2253  1988: (6) Gratton & Ortolani 1986; (7) Gratton & Sneden 1987; (8) Gratton
2254  & Sneden (1988); (9) Gratton & Sneden 1991; (10) Kraft et al.
2255  1982; (11) LCL, or Laird, 1990; (12) Leep & Wallerstein 1981; (13) Luck
2256  & Bond 1981; (14) Luck & Bond 1985; (15) Magain 1987; (16) Magain 1989;
2257  (17) Peterson 1981; (18) Peterson, Kurucz, & Carney 1990; (19) RMB; (20)
2258  Schuster & Nissen 1988; (21) Schuster & Nissen 1989b; (22) Spite et al.
2259  1984; (23) Spite & Spite 1986; (24) Hobbs & Thorburn 1991; (25) Hobbs et
2260  al.
2261  1991; (26) Olsen 1983.
2262 \end_layout
2263
2264 \end_inset
2265
2266
2267 \end_layout
2268
2269 \begin_layout Standard
2270 \begin_inset ERT
2271 status collapsed
2272
2273 \begin_layout Plain Layout
2274
2275 % LyX can load deluxetable files verbatim.
2276  To see this in action, uncomment the following
2277 \end_layout
2278
2279 \end_inset
2280
2281
2282 \end_layout
2283
2284 \begin_layout Standard
2285 \begin_inset ERT
2286 status collapsed
2287
2288 \begin_layout Plain Layout
2289
2290 % line (delete the 
2291 \end_layout
2292
2293 \end_inset
2294
2295
2296 \begin_inset Quotes eld
2297 \end_inset
2298
2299
2300 \begin_inset ERT
2301 status collapsed
2302
2303 \begin_layout Plain Layout
2304
2305 %
2306 \end_layout
2307
2308 \end_inset
2309
2310
2311 \begin_inset Quotes erd
2312 \end_inset
2313
2314
2315 \begin_inset ERT
2316 status collapsed
2317
2318 \begin_layout Plain Layout
2319
2320 ) and copy the file table.tex from the AASTeX 5.0 distribution into
2321 \end_layout
2322
2323 \end_inset
2324
2325
2326 \end_layout
2327
2328 \begin_layout Standard
2329 \begin_inset ERT
2330 status collapsed
2331
2332 \begin_layout Plain Layout
2333
2334 % the same directory as this file.
2335 \end_layout
2336
2337 \end_inset
2338
2339
2340 \end_layout
2341
2342 \begin_layout Standard
2343 \begin_inset ERT
2344 status collapsed
2345
2346 \begin_layout Plain Layout
2347
2348 %
2349 \end_layout
2350
2351 \end_inset
2352
2353
2354 \begin_inset CommandInset include
2355 LatexCommand input
2356 filename "table"
2357
2358 \end_inset
2359
2360
2361 \end_layout
2362
2363 \end_body
2364 \end_document