English

Polarized Transmission Spectrum of Earth as Observed during a Lunar Eclipse

Earth and Planetary Astrophysics 2017-11-15 v1

Abstract

Polarization during a lunar eclipse is a forgotten mystery. Coyne & Pellicori (1970) reported the detection of significant polarization during the lunar eclipse on 1968 April 13. Multiple scattering during the first transmission through the Earth's atmosphere was suggested as a possible cause of the polarization, but no conclusive determination was made. No further investigations on polarization during a lunar eclipse are known. We revisit this mystery with an interest in possible application to extrasolar planets, if planetary transmitted light is indeed polarized, it may be possible to investigate an exoplanet atmosphere using "transit polarimetry." Here we report results of the first spectropolarimetry for the Moon during a lunar eclipse on 2015 April 4. We observed polarization degrees of 2-3% at wavelengths of 500-600 nm, in addition, an enhanced feature was detected at the O2_2 A band near 760 nm. The observed time variation and wavelength dependence are consistent with an explanation of polarization caused by double scattering during the first transmission through the Earth's atmosphere, accompanied by latitudinal atmospheric inhomogeneity. Transit polarimetry for exoplanets may be useful to detect O2_2 gas and to probe the latitudinal atmospheric inhomogeneity, and it is thus worthy of serious consideration.

Keywords

Cite

@article{arxiv.1711.01555,
  title  = {Polarized Transmission Spectrum of Earth as Observed during a Lunar Eclipse},
  author = {Jun Takahashi and Yoichi Itoh and Kensuke Hosoya and Padma A. Yanamandra-Fisher and Takashi Hattori},
  journal= {arXiv preprint arXiv:1711.01555},
  year   = {2017}
}

Comments

19 pages, 12 figures, accepted for publication in AJ