2011A&A...536A..42Z


Query : 2011A&A...536A..42Z

2011A&A...536A..42Z - Astronomy and Astrophysics, volume 536A, 42-42 (2011/12-1)

Post common envelope binaries from SDSS. XI. The white dwarf mass distributions of CVs and pre-CVs.

ZOROTOVIC M., SCHREIBER M.R. and GAENSICKE B.T.

Abstract (from CDS):

We have known for a long time that many of the measured white dwarf (WD) masses in cataclysmic variables (CVs) significantly exceed the mean mass of single WDs. This was thought to be related to observational biases, but recent high-precision measurements of WD masses in a great number of CVs are challenging this interpretation. A crucial question in this context is whether the high WD masses seen among CVs are already imprinted in the mass distribution of their progenitors, i.e. among detached post-common-envelope binaries (PCEBs) that consist of a WD and a main-sequence star. We review the measured WD masses of CVs, determine the WD-mass distribution of an extensive sample of PCEBs that are representative for the progenitors of the current CV population (pre-CVs) and compare both distributions. We calculate the CV formation time of the PCEBs in our sample by determining the post common-envelope (CE) and the main-sequence evolution of the binary systems and define a pre-CV to be a PCEB that evolves into a semi-detached configuration with stable mass transfer within less than the age of the Galaxy. Possible observational biases affecting the WD-mass distribution for the pre-CV and the CV samples are discussed. The mean WD mass among CVs is <Mwd≥0.83±0.23M, much larger than that found for pre-CVs, <Mwd≥0.67±0.21M. Selection effects cannot explain the high WD masses observed in CVs. We also note that compared to the predictions of binary-population models, the observed fraction of He-core WDs is small both among CVs (≤10%) and pre-CVs (≤17±8%). We suggest two possible explanations for the high WD masses among CVs, both of which imply substantial revisions to the standard model of CV evolution: either most CVs have formed above the orbital-period gap (which requires a high WD mass to initiate stable mass transfer or a previous phase of thermal-timescale mass transfer), or the mass of the WDs in CVs grows through accretion (which strongly disagrees with the predictions of classical nova models). Both options may imply that CVs contribute to the single-degenerate progenitors of type Ia supernovae. The number of He-core WDs in CVs (≤10%) is roughly consistent with the number of He-core WDs in pre-CVs (≤17±8%). This indicates a low value of the CE efficiency.

Abstract Copyright:

Journal keyword(s): binaries: close - white dwarfs - novae, cataclysmic variables

Simbad objects: 97

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Number of rows : 97
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 GALEX J005245.1-005337 WD* 00 52 45.1155098856 -00 53 37.527493848           DA+dMe 25 0
2 G 269-70 CV* 00 59 28.8888716656 -26 31 05.656933319   16.22 15.94     M5.5 42 0
3 GALEX J011009.1+132617 WD* 01 10 09.0943093512 +13 26 16.376271612           DA+dMe 33 0
4 V* HT Cas CV* 01 10 13.1213394144 +60 04 35.489642700     14.10     M5.5e 384 0
5 WD 0137-349 WD* 01 39 42.8531929464 -34 42 39.577891392 14.60 15.33 15.30     DA3 88 0
6 V* FS Cet CV* 02 35 07.5939240480 +03 43 56.816311296 11.027 12.209 12.412 12.325 11.968 DA1+dM 367 0
7 SDSS J023804.39-000545.7 WD* 02 38 04.3965744168 -00 05 45.710139732           DA+M 18 0
8 2MASS J02464256+0041372 ** 02 46 42.5574093864 +00 41 37.120650540           dMe+DA 25 0
9 US 3566 WD* 03 03 08.3621593176 +00 54 43.921390896   18.9 18.06 18.1 16.00 DC+M4.5e 40 0
10 V* CC Cet CV* 03 10 54.9907539360 +09 49 25.681183680           DA2+dM 53 0
11 V* GK Per No* 03 31 12.0098863320 +43 54 15.469951212   14.139 13.090 12.589   K1IV 924 0
12 V* VW Hyi CV* 04 09 11.3967378648 -71 17 41.554528260   12.786 12.543 14.160   ?+L0:e 637 0
13 V* XZ Eri CV* 04 11 25.7623081800 -15 23 23.764734528           ~ 54 0
14 V* RR Cae WD* 04 21 05.5631820426 -48 39 07.061113433 14.50 14.92 14.40     DA7.8 150 1
15 HZ 9 WD* 04 32 23.7569977200 +17 45 02.672275356   14.28 13.93 14.21   DA3+dM 148 0
16 V* V363 Aur CV* 05 33 33.4591265880 +36 59 32.475580692     14.2     K0V 98 0
17 V* V347 Pup CV* 06 10 33.6583947384 -48 44 25.363374036   13.95 13.57 13.24 12.79 M0.5V 94 0
18 V* HR Cam WD* 07 17 09.7856917536 +74 00 40.535184924   14.91 14.97     DA2.6 68 0
19 V* IN CMa CV* 07 20 47.9109655416 -31 47 02.732961552           DAO+dM 91 0
20 V* U Gem CV* 07 55 05.2323858391 +22 00 05.045435077   15.3 14.54     DA 1094 0
21 V* Z Cha CV* 08 07 27.7517751528 -76 32 00.665029356           M5.5 602 1
22 SDSS J083354.84+070240.1 ** 08 33 54.8566618656 +07 02 40.237427652           DA+M 21 0
23 V* AC Cnc CV* 08 44 27.1121665272 +12 52 31.995783264   13.80 14.15     K1-3V 138 0
24 CRTS J090350.7+330036 CV* 09 03 50.7253230816 +33 00 36.113249628           ~ 24 0
25 V* GY Cnc CV* 09 09 50.5407550968 +18 49 47.429496300           ~ 78 0
26 GALEX J092452.4+002449 WD* 09 24 52.4057728488 +00 24 48.996111996           DA+dMe 28 0
27 V* DV UMa CV* 09 46 36.5964360384 +44 46 44.683031784   19.0       DA:+M 122 0
28 GALEX J094913.4+032255 WD* 09 49 13.3692482304 +03 22 54.557292324           DA+dMe 21 0
29 V* OY Car CV* 10 06 22.0793274312 -70 14 04.584660540           ~ 566 0
30 CRTS J100658.4+233724 CV* 10 06 58.4169543888 +23 37 24.466842948           D+M3e 27 0
31 HE 1013-0505 WD* 10 16 28.6043334312 -05 20 35.222859276     14.1     DAO+Me 105 0
32 V* UZ Sex WD* 10 28 34.8776549016 -00 00 29.394837900   13.89   13.9   DA3+dM 79 0
33 V* DW UMa CV* 10 33 52.8751411128 +58 46 54.717259044   14.33   14.33 14.35 ~ 229 0
34 SDSS J103533.02+055158.4 CV* 10 35 33.0226966464 +05 51 58.334599512   18.57 18.80     DA 56 0
35 V* IY UMa CV* 10 43 56.7487980888 +58 07 31.920814488   17.52 16.61 17.62 17.60 ~ 112 0
36 WG 17 WD* 10 44 10.2360886800 -69 18 18.075899052   13.05 13.09     DA2+dM 58 0
37 GALEX J104738.2+052319 WD* 10 47 38.2443295416 +05 23 20.342931072           DA+M 19 0
38 V* QZ Vir CV* 11 38 26.8241432424 +03 22 07.110298596     15.81     ~ 254 1
39 LBQS 1140+0026 WD* 11 43 12.5738603472 +00 09 26.642788056   18.45 18.3     DA4.0+dM 35 0
40 SDSS J115207.00+404947.9 CV* 11 52 07.0049089008 +40 49 47.903371500           ~ 21 0
41 GALEX J121258.2-012309 WD* 12 12 58.2526059240 -01 23 10.195008864           DA+dMe 39 0
42 V* UX CVn HS* 12 14 48.5246337120 +36 38 49.336629900   12.9 13.18     sdB 106 0
43 V* EG UMa CV* 12 15 44.0979312096 +52 31 01.289011692   13.0 13.230 13.149   DA+dM 110 1
44 Ton 617 WD* 12 26 30.8730979008 +30 38 52.652529600   16.099 16.05     DA+M3 62 0
45 V* GP CVn CV* 12 27 40.8198845784 +51 39 24.962023620   18.89 19.08     DA+M 34 0
46 HE 1247-1738 WD* 12 50 22.0733116080 -17 54 46.559601540   16.32 16.19 15.7   DA3+dM 20 0
47 V* V1258 Cen CV* 13 00 29.0630127912 -30 52 56.960840244           ~ 24 0
48 V* DE CVn EB* 13 26 53.2712830008 +45 32 46.685746104   14.23 12.96 12.59   DA+M3V 53 0
49 EC 13349-3237 WD* 13 37 50.7139610760 -32 52 21.590443776   16.7 16.34     DA1+dM 16 0
50 PB 4095 WD* 13 48 41.6345425224 +18 34 10.567727472   17       DA+M4 21 0
51 CRTS J141002.2-124809 CV* 14 10 02.2323727536 -12 48 09.095831352           ~ 6 0
52 GALEX J141134.7+102840 WD* 14 11 34.6996128888 +10 28 39.821940948     19.15     DA+M 25 0
53 2QZ J141451.7-013243 ** 14 14 51.7344040944 -01 32 42.791901720   19.31       DA+M 19 0
54 V* GK Vir WD* 14 15 36.4128319176 +01 17 18.226779000   17.0       DAe+M 105 0
55 2MASS J14295117+5759492 SB* 14 29 51.1906922112 +57 59 48.976316700           M3+D 11 0
56 PM J14332+1011 CV* 14 33 17.7877088088 +10 11 23.484691356     18.86     ~ 51 0
57 GD 337 WD* 14 34 43.2932850600 +53 35 21.186386556   16.06 16.09     DA3+K 63 0
58 V* OU Vir CV* 14 35 00.2216793576 -00 46 06.269754864   18.5       M2: 51 0
59 HE 1432-1625 WD* 14 35 45.6657474288 -16 38 16.935355212   15.14 14.58 15.0   DA3+dM 17 0
60 SDSS J143547.87+373338.5 WD* 14 35 47.8735199952 +37 33 38.699663868           DA+M4.5 42 0
61 SDSS J150137.22+550123.4 CV* 15 01 37.2173710728 +55 01 23.280739320   18.2   18.8   ~ 27 0
62 V* NZ Boo CV* 15 02 41.0007781680 +33 34 24.002686380           ~ 37 0
63 SDSS J150657.57-012021.7 WD* 15 06 57.5783653464 -01 20 21.680881296           DA+M 20 0
64 V* OV Boo CV* 15 07 22.3698571080 +52 30 39.804859764   18.7   18.5   DAe 70 0
65 CSO 579 WD* 15 19 21.7358813784 +35 36 25.804056348   17       DA+M 24 0
66 CBS 318 WD* 15 24 25.2151600800 +50 40 09.848642160   17       DA+dMe 30 0
67 GALEX J152933.2+002031 WD* 15 29 33.2587800336 +00 20 31.217685504           DA4+M: 32 0
68 GALEX J154846.0+405728 WD* 15 48 46.0071409320 +40 57 28.797200712           DA+M6 33 0
69 V* NN Ser CV* 15 52 56.1203524080 +12 54 44.429312196     16.51     DAO1+M4 267 0
70 GALEX J155808.4+264225 WD* 15 58 08.4981349224 +26 42 25.774838280           DA+M4 11 0
71 SDSS J164615.60+422349.3 ** 16 46 15.6124491192 +42 23 49.275912264           DA+M 22 0
72 GALEX J164812.3+281123 WD* 16 48 12.3582813240 +28 11 23.081526780           DA+dMe 6 0
73 V* V1239 Her CV* 17 02 13.2462561912 +32 29 54.159948960           M1.5e 49 0
74 GALEX J170509.6+210904 WD* 17 05 09.6534830232 +21 09 04.442823828           DA+M 21 0
75 GALEX J171810.2+610113 WD* 17 18 10.1557623528 +61 01 14.025822096           DA+M 24 0
76 GALEX J172406.0+562004 CV* 17 24 06.1346969472 +56 20 03.087296880   15.65 16.24     DA+dMe 36 0
77 SDSS J173101.49+623316.0 ** 17 31 01.4958522528 +62 33 15.941287980           DA+dMe 27 0
78 V* DQ Her CV* 18 07 30.2510391864 +45 51 32.564791872   14.605 14.443 14.800   M3+Ve 1001 1
79 V* AM Her CV* 18 16 13.2546541781 +49 52 04.759861155   15.124 14.808 13.525   M4.5-5Ve 956 0
80 V* EM Cyg CV* 19 38 40.1068970904 +30 30 28.332591012     11.90     ~ 252 0
81 V* WZ Sge CV* 20 07 36.5037622512 +17 42 14.733254952   15.30 15.20     DAepv 935 0
82 RX J2013.1+4002 WD* 20 13 09.3685663800 +40 02 24.241439184     14.6     DAO+M2/3e 91 1
83 V* AE Aqr CV* 20 40 09.1598959176 -00 52 15.055595220   12.46 10.40   10.191 K3-5IV/V 659 0
84 SDSS J211205.31+101428.0 WD* 21 12 05.3135681736 +10 14 28.040318988   17.2   17.8   DA+dMe 22 0
85 GALEX J211428.4-010357 WD* 21 14 28.4153295168 -01 03 57.134555244           DA+M3 18 0
86 GALEX J212052.0-005827 WD* 21 20 51.9230881800 -00 58 27.284932776           DA+M 23 0
87 SDSS J212320.74+002455.5 WD* 21 23 20.7360003720 +00 24 55.588919796           DA+M 25 0
88 V* IK Peg dS* 21 26 26.6611049976 +19 22 32.310190344   6.294 6.064     kA6hA9mF0+DA 189 0
89 RX J2130.6+4710 XB* 21 30 18.4670033976 +47 10 07.403693592           DA+M3.5/4Ve 32 0
90 GALEX J213218.1+003159 WD* 21 32 18.1167337752 +00 31 58.847829420           DA+M 27 0
91 PB 5119 WD* 22 16 16.5908353200 +01 02 05.704602828   17.9 18.60 17.7 17.68 DA+dMe 24 0
92 SDSS J224038.37-093541.4 WD* 22 40 38.3756323872 -09 35 41.421597792           DA+M 25 0
93 GD 245 CV* 22 58 48.1351624092 +25 15 43.908615894   13.699 13.650 13.833   DA2.2 67 0
94 SDSS J231825.23-093539.2 WD* 23 18 25.2329758344 -09 35 39.071089392           DA+M 23 0
95 V* IP Peg CV* 23 23 08.5362249504 +18 24 59.206884012           M2 378 0
96 GALEX J233928.3-002039 WD* 23 39 28.3569467208 -00 20 40.174877724           DA+M 17 0
97 V* DI Phe CV* 23 54 20.4574289520 -47 00 20.249299224           ~ 11 0

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2023.10.03-09:21:25

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