Development of seven-beam optics using dielectric lenses for a new 72–116 GHz receiver in the Nobeyama 45 m telescope

Author:

Yamasaki Yasumasa1ORCID,Hasegawa Yutaka1ORCID,Yoneyama Sho1,Kawashita Sana1,Chinen Tsubasa1,Masui Sho1ORCID,Nosohara Chiaki1,Sun Heyang1,Dakie Shuto1,Kameyama Akira1,Fujitomo Ikko2,Nishikawa Yuma2,Ogawa Hideo1,Tatematsu Ken’ichi34ORCID,Nishimura Atsushi3ORCID,Miyazawa Chieko3,Takahashi Toshikazu3,Maekawa Jun3,Gonzalez Alvaro45ORCID,Kojima Takafumi46ORCID,Imada Hiroaki5ORCID,Kaneko Keiko6,Sakai Ryo6,Sakai Takeshi7,Onishi Toshikazu1ORCID

Affiliation:

1. Department of Physics, Graduate School of Science, Osaka Metropolitan University , 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka 599-8531, Japan

2. Department of Physics, School of Science, Osaka Metropolitan University , 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka 599-8531, Japan

3. Nobeyama Radio Observatory, National Astronomical Observatory of Japan , 462-2 Nobeyama, Minamimaki, Minamisaku, Nagano 384-1305, Japan

4. Department of Astronomical Science, The Graduate University for Advanced Studies , SOKENDAI, 2-21-1 Osawa, Mitaka, Tokyo 181-8588, Japan

5. ALMA Project, National Astronomical Observatory of Japan , 2-21-1 Osawa, Mitaka, Tokyo 181-8588, Japan

6. Advanced Technology Center, National Astronomical Observatory of Japan , 2-21-1 Osawa, Mitaka, Tokyo 181-8588, Japan

7. Graduate School of Informatics and Engineering, The University of Electro-Communications , 1-5-1 Chofugaoka, Chofu, Tokyo 182-8585, Japan

Abstract

Abstract We developed a new seven-beam heterodyne receiver “7BEE” in the 72–116 GHz band for the Nobeyama 45 m telescope to investigate the early stage of star formation by deriving the deuterium fraction of dense cores. The optics for the receiver employs wideband corrugated horns covering the 72–116 GHz band and dielectric lenses to couple the incoming radiation from the antenna on to the feeds. One of the important aspects in the lens design is the anti-reflection (AR) structure to mitigate the reflections on the lens surfaces. Triangular grooves, which gradually change the effective refractive index from air to dielectric, were adopted as a basic AR design since the return loss can be in the order of 20 dB or better. The main goal of this study is to compare the radio frequency (RF) characteristics of the lenses with different patterns and sizes of AR grooving structures. We confirmed that concentric grooves degraded beam symmetry, cross-polarization characteristics, and aperture efficiency due to the birefringence of the grooves, which gave rise to wavefront distortions. Straight grooves of two different gap widths, 1.2 mm and 1.7 mm, were compared and showed similar good performance in terms of beam patterns and noise contribution. However, the latter showed a few percent higher aperture efficiency. Therefore, the straight grooves with 1.7 mm gap width were adopted as the AR structure of our lens.

Funder

Japan Society for the Promotion of Science

Japan Science and Technology Agency

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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