English

A Coronagraph with a Sub-$\lambda/D$ IWA and a Moderate Spectral Bandwidth

Instrumentation and Methods for Astrophysics 2022-05-25 v1 Earth and Planetary Astrophysics

Abstract

Future high-contrast imaging spectroscopy with a large segmented telescope will be able to detect atmospheric molecules of Earth-like planets around G- or K-type main-sequence stars. Increasing the number of target planets will require a coronagraph with a small inner working angle (IWA), and wide spectral bandwidth is required if we enhance a variety of detectable atmospheric molecules. To satisfy these requirements, in this paper, we present a coronagraphic system that provides an IWA less than 1λ0/D\lambda_0 / D over a moderate wavelength band, where λ0\lambda_0 is the design-center wavelength and DD denotes the full width of the rectangular aperture included in the telescope aperture. A performance simulation shows that the proposed system approximately achieves a contrast below 101010^{-10} at 1λ0/D\lambda_0 / D over the wavelengths of 650--750nm. In addition, this system has a core throughput \geq 10\% at input separation angles of \sim 0.7--1.4λ0/D\lambda_0 / D; to reduce telescope time, we need prior information on the target's orbit by other observational methods to a precision higher than the width of the field of view. For some types of aberration including tilt aberration, the proposed system has a sensitivity less than ever-proposed coronagraphs that have IWAs of approximately 1λ0/D1\lambda_0/D. In future observations of Earth-like planets, the proposed coronagraphic system may serve as a supplementary coronagraphic system dedicated to achieving an extremely small IWA.

Keywords

Cite

@article{arxiv.2204.03164,
  title  = {A Coronagraph with a Sub-$\lambda/D$ IWA and a Moderate Spectral Bandwidth},
  author = {Satoshi Itoh and Taro Matsuo},
  journal= {arXiv preprint arXiv:2204.03164},
  year   = {2022}
}

Comments

Accepted for publication in the Astronomical Journal

R2 v1 2026-06-24T10:40:37.202Z