4.7 Article

IMPROVED DISTANCES TO TYPE Ia SUPERNOVAE WITH TWO SPECTROSCOPIC SUBCLASSES

Journal

ASTROPHYSICAL JOURNAL LETTERS
Volume 699, Issue 2, Pages L139-L143

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/699/2/L139

Keywords

cosmology: observations; distance scale; dust, extinction; supernovae: general

Funding

  1. NSF [AST-0607485, AST-0708873]
  2. TABASGO Foundation
  3. US Department of Energy [DE-FC0206ER41453, DE-FG0208ER41563]
  4. National Natural Science Foundation of China [10673007]
  5. China-973 Program [2009CB824800]

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We study the observables of 158 relatively normal Type Ia supernovae (SNe Ia) by dividing them into two groups in terms of the expansion velocity inferred from the absorption minimum of the Si II lambda 6355 line in their spectra near B-band maximum brightness. One group (Normal) consists of normal SNe Ia populating a narrow strip in the Si II velocity distribution, with an average expansion velocity < v > = 10,600 +/- 400 km s(-1) near B maximum; the other group (HV) consists of objects with higher velocities, v greater than or similar to 11,800 km s(-1). Compared with the Normal group, the HV one shows a narrower distribution in both the peak luminosity and the luminosity decline rate Delta m(15). In particular, their B-V colors at maximum brightness are found to be on average redder by similar to 0.1 mag, suggesting that they either are associated with dusty environments or have intrinsically red B-V colors. The HV SNe Ia are also found to prefer a lower extinction ratio R(V) approximate to 1.6 (versus similar to 2.4 for the Normal ones). Applying such an absorption-correction dichotomy to SNe Ia of these two groups remarkably reduces the dispersion in their peak luminosity from 0.178 mag to only 0.125 mag.

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