Table 2.

Model parameters of the two mass–radius relations from the Montreal and La Plata models for a progenitor metallicity of Z = 0.02.

ParametersMontrealaLa Plata
Teff|$1460{-}150\, 000$| K|$2750{-}80\, 000$| K
log g6.7−9.36−9.45
Mass (⁠|${M_{\rm WD}}$|⁠)0.2−1.3 M0.2−1.3 M
Core compositionCO coreHe Core |$({M_{\rm WD}}\lt 0.5\, \mbox{$\mathrm{M_\odot }$})^{\it b}$|
entire mass rangeCO core |$(0.5 \le {M_{\rm WD}} \le 1.0 \, \mbox{$\mathrm{M_\odot }$})^{\it c}$|
O-Ne core |$({M_{\rm WD}}\ge 1.1\, \mbox{$\mathrm{M_\odot }$})^{\it d}$|
H envelope mass∼10−4∼10−3 (⁠|${M_{\rm WD}} \le 0.32\, \mbox{$\mathrm{M_\odot }$})^{b}$|
(⁠|${M_{\rm H}}/M_{\rm WD}$|⁠)entire mass range∼10−3.5−10−4.5
|$(0.5 \le {M_{\rm WD}} \le 0.88\, \mbox{$\mathrm{M_\odot }$})^{c}$|
|$\sim 10^{-6} ({M_{\rm WD}}\ge 1.1\, \mbox{$\mathrm{M_\odot }$})^{d}$|
ParametersMontrealaLa Plata
Teff|$1460{-}150\, 000$| K|$2750{-}80\, 000$| K
log g6.7−9.36−9.45
Mass (⁠|${M_{\rm WD}}$|⁠)0.2−1.3 M0.2−1.3 M
Core compositionCO coreHe Core |$({M_{\rm WD}}\lt 0.5\, \mbox{$\mathrm{M_\odot }$})^{\it b}$|
entire mass rangeCO core |$(0.5 \le {M_{\rm WD}} \le 1.0 \, \mbox{$\mathrm{M_\odot }$})^{\it c}$|
O-Ne core |$({M_{\rm WD}}\ge 1.1\, \mbox{$\mathrm{M_\odot }$})^{\it d}$|
H envelope mass∼10−4∼10−3 (⁠|${M_{\rm WD}} \le 0.32\, \mbox{$\mathrm{M_\odot }$})^{b}$|
(⁠|${M_{\rm H}}/M_{\rm WD}$|⁠)entire mass range∼10−3.5−10−4.5
|$(0.5 \le {M_{\rm WD}} \le 0.88\, \mbox{$\mathrm{M_\odot }$})^{c}$|
|$\sim 10^{-6} ({M_{\rm WD}}\ge 1.1\, \mbox{$\mathrm{M_\odot }$})^{d}$|

aBédard et al. (2020). bAlthaus et al. (2013). cCamisassa et al. (2016). dCamisassa et al. (2019).

Table 2.

Model parameters of the two mass–radius relations from the Montreal and La Plata models for a progenitor metallicity of Z = 0.02.

ParametersMontrealaLa Plata
Teff|$1460{-}150\, 000$| K|$2750{-}80\, 000$| K
log g6.7−9.36−9.45
Mass (⁠|${M_{\rm WD}}$|⁠)0.2−1.3 M0.2−1.3 M
Core compositionCO coreHe Core |$({M_{\rm WD}}\lt 0.5\, \mbox{$\mathrm{M_\odot }$})^{\it b}$|
entire mass rangeCO core |$(0.5 \le {M_{\rm WD}} \le 1.0 \, \mbox{$\mathrm{M_\odot }$})^{\it c}$|
O-Ne core |$({M_{\rm WD}}\ge 1.1\, \mbox{$\mathrm{M_\odot }$})^{\it d}$|
H envelope mass∼10−4∼10−3 (⁠|${M_{\rm WD}} \le 0.32\, \mbox{$\mathrm{M_\odot }$})^{b}$|
(⁠|${M_{\rm H}}/M_{\rm WD}$|⁠)entire mass range∼10−3.5−10−4.5
|$(0.5 \le {M_{\rm WD}} \le 0.88\, \mbox{$\mathrm{M_\odot }$})^{c}$|
|$\sim 10^{-6} ({M_{\rm WD}}\ge 1.1\, \mbox{$\mathrm{M_\odot }$})^{d}$|
ParametersMontrealaLa Plata
Teff|$1460{-}150\, 000$| K|$2750{-}80\, 000$| K
log g6.7−9.36−9.45
Mass (⁠|${M_{\rm WD}}$|⁠)0.2−1.3 M0.2−1.3 M
Core compositionCO coreHe Core |$({M_{\rm WD}}\lt 0.5\, \mbox{$\mathrm{M_\odot }$})^{\it b}$|
entire mass rangeCO core |$(0.5 \le {M_{\rm WD}} \le 1.0 \, \mbox{$\mathrm{M_\odot }$})^{\it c}$|
O-Ne core |$({M_{\rm WD}}\ge 1.1\, \mbox{$\mathrm{M_\odot }$})^{\it d}$|
H envelope mass∼10−4∼10−3 (⁠|${M_{\rm WD}} \le 0.32\, \mbox{$\mathrm{M_\odot }$})^{b}$|
(⁠|${M_{\rm H}}/M_{\rm WD}$|⁠)entire mass range∼10−3.5−10−4.5
|$(0.5 \le {M_{\rm WD}} \le 0.88\, \mbox{$\mathrm{M_\odot }$})^{c}$|
|$\sim 10^{-6} ({M_{\rm WD}}\ge 1.1\, \mbox{$\mathrm{M_\odot }$})^{d}$|

aBédard et al. (2020). bAlthaus et al. (2013). cCamisassa et al. (2016). dCamisassa et al. (2019).

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