2007ApJS..171..493J


Query : 2007ApJS..171..493J

2007ApJS..171..493J - Astrophys. J., Suppl. Ser., 171, 493-511 (2007/August-0)

Goodness-of-Fit tests DIFF1 and DIFF2 for locally normalized supernova spectra.

JEFFERY D.J., KETCHUM W., BRANCH D., BARON E., ELMHAMDI A. and DANZIGER I.J.

Abstract (from CDS):

Two quantitative tests DIFF1 and DIFF2 for measuring goodness of fit between two locally normalized supernova spectra are presented. Locally normalized spectra are obtained by dividing a spectrum by the same spectrum smoothed over a wavelength interval relatively large compared to line features, but relatively small compared to continuum features. DIFF1 essentially measures the mean relative difference between the line patterns of locally normalized spectra, and DIFF2 is DIFF1 minimized by a relative logarithmic wavelength shift between the spectra: the shift is effectively an artificial relative Doppler shift. Both DIFF1 and DIFF2 measure the physical similarity of line formation and thus of supernovae. DIFF1 puts more weight on overall physical similarity of the supernovae than DIFF2 because the DIFF2 shift compensates somewhat for some physical distinction in the supernovae. Both tests are useful in ordering supernovae into empirical groupings for further analysis. We present some examples of locally normalized spectra for Type IIb supernova SN 1993J with some analysis of these spectra. The UV parts of two of the SN 1993J spectra are HST spectra that have not been published before. We also give an example of fitted locally normalized spectra and, as an example of the utility of DIFF1 and DIFF2, some preliminary statistical results for hydrogen-deficient core-collapse (HDCC) supernova spectra. This paper makes use of and refers to material to found at the first author's online supernova spectrum database SUSPEND (Supernovae Spectra Pending further analysis).

Abstract Copyright:

Journal keyword(s): Methods: Data Analysis - Stars: Supernovae: General - supernovae: individual (SN 1987K) - Stars: Supernovae: Individual: Alphanumeric: SN 1993J

Simbad objects: 23

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Number of rows : 23
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 SN 1990aa SN* 00 52 58.3 +29 01 56     17     SNIc 40 1
2 SN 2002ap SN* 01 36 23.85 +15 45 13.2   13.11 14.54     SNIc-BL 563 1
3 SN 1999di SN* 01 59 54.86 +23 38 22.7     18.0     SNIb 34 1
4 SN 1984L SN* 02 35 30.54 -07 09 30.3   14.0       SNIb 194 1
5 SN 1992A SN* 03 36 27.41 -34 57 31.4   12.56 12.50     SNIa 402 1
6 SN 1987A SN* 05 35 28.020 -69 16 11.07           SNIIpec 4934 2
7 SN 1998fa SN* 06 42 51.51 +41 25 18.9     18.2     SNIIb 19 1
8 SN 1997ef SN* 07 57 02.87 +49 33 41.3     16.5     SNIc-BL 270 1
9 SN 1987M SN* 09 08 06 +78 05.4   15.3       SNIc 126 1
10 SN 1993J SN* 09 55 24.77476 +69 01 13.7026   10.8 12.0     SNIIb 1415 1
11 M 81 Sy2 09 55 33.1726556496 +69 03 55.062505368   7.89 6.94     ~ 4444 3
12 SN 2005bf SN* 10 23 56.99 -03 11 29.3     18.0     SNIb 203 1
13 SN 1996cb SN* 11 03 41.98 +28 54 13.7   14.22       SNIIb 112 1
14 SN 1979C SN* 12 22 58.58 +15 47 52.7   11.6       SNIIL 584 1
15 SN 1990B SN* 12 36 33.86 +11 14 29.9     15.75     SNIc 127 1
16 SN 1987K SN* 12 43 41.17 +16 23 44.9     14.2     SNIIb: 147 1
17 SN 1986G SN* 13 25 36.46 -43 01 53.6   12.45 11.44     SNIapec 408 1
18 SN 1994I SN* 13 29 54.072 +47 11 30.50     12.9     SNIc 625 1
19 SN 1983N SN* 13 36 51.23 -29 54 01.7   11.7       SNIb 273 1
20 SN 1988L SN* 14 06 21.9 +50 43 47   16.5 16.5     SNIb 46 1
21 SN 1998bw SN* 19 35 03.17 -52 50 46.1   14.09       SNIc 1820 2
22 SN 1980K SN* 20 35 30.07 +60 06 23.7   11.6       SNIIL 464 1
23 SN 1999ex SN* 22 16 07.27 -36 50 53.7   17.35       SNIb 141 2

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