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Related papers: Joint Estimation of Properties of the Lunar Subsur…

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The Lunar Surface Electromagnetics Explorer 'LuSEE Night' is a low frequency radio astronomy experiment that will be delivered to the farside of the Moon by the NASA Commercial Lunar Payload Services (CLPS) program in late 2025 or early…

The Lunar Surface Electromagnetics Experiment at Night (LuSEE-Night) is a project designed to investigate the feasibility of observing the Cosmic Dark Ages using an instrument on the lunar far-side. LuSEE-Night will measure the redshifted…

Instrumentation and Methods for Astrophysics · Physics 2024-07-11 Benjamin R. B. Saliwanchik , Sven Herrmann , Ivan Kotov , Paul O'Connor , Maxim Potekhin , Anže Slosar , Stuart Bale

LuSEE-Night is a pathfinder radio telescope on the lunar far side employing four 3-m monopole antennas arranged as two horizontal cross pseudo-dipoles on a rotational stage and sensitive to the radio sky in the 1-50 MHz frequency band.…

A new era of exploration of the low radio frequency Universe from the Moon will soon be underway with landed payload missions facilitated by NASA's Commercial Lunar Payload Services (CLPS) program. CLPS landers are scheduled to deliver two…

Instrumentation and Methods for Astrophysics · Physics 2021-02-05 Jack O. Burns , Robert MacDowall , Stuart Bale , Gregg Hallinan , Neil Bassett , Alex Hegedus

The far side of the Moon, shielded from terrestrial radio frequency interference and beyond the influence of Earth's ionosphere, should offer a uniquely quiet environment for radio astronomy and cosmological experiments. The radio sky below…

Instrumentation and Methods for Astrophysics · Physics 2026-02-26 Kaja M. Rotermund , Aritoki Suzuki , Stuart D. Bale , Anže Slosar

The farside of the Moon is a pristine, quiet platform to conduct low radio frequency observations of the early Universe's Dark Ages, as well as space weather and magnetospheres associated with habitable exoplanets. In this paper, the…

Instrumentation and Methods for Astrophysics · Physics 2021-03-03 Jack O. Burns

The Dark Ages (DA) provides a crucial window into the physics of the infant Universe, with the 21-cm signal offering the only direct probe for mapping out the three-dimensional distribution of matter at this epoch. To measure this…

Radiowave Observations on the Lunar Surface of the photo-Electron Sheath instrument (ROLSES- 1) onboard the Intuitive Machines' Odysseus lunar lander represents NASA's first radio telescope on the Moon, and the first United States…

A redshifted 21 cm line absorption signature is commonly expected from the cosmic dawn era, when the first stars and galaxies formed. The detailed traits of this signal can provide important insight on the cosmic history. However, high…

Instrumentation and Methods for Astrophysics · Physics 2022-04-20 Yuan Shi , Furen Deng , Yidong Xu , Fengquan Wu , Qisen Yan , Xuelei Chen

Low radio frequency experiments performed on Earth are contaminated by both ionospheric effects and radio frequency interference (RFI) from Earth-based sources. The lunar farside provides a unique environment above the ionosphere where RFI…

Instrumentation and Methods for Astrophysics · Physics 2020-06-15 Neil Bassett , David Rapetti , Jack O. Burns , Keith Tauscher , Robert MacDowall

An array of low-frequency dipole antennas on the lunar farside surface will probe a unique, unexplored epoch in the early Universe called the Dark Ages. It begins at Recombination when neutral hydrogen atoms formed, first revealed by the…

NASA's return to the Moon presents unparalleled opportunities to advance high-impact scientific capabilities. At the cutting edge of these possibilities are extremely high-resolution interferometric observations at visible and ultraviolet…

Chang'E-4 (CE4), the first mission to soft-land on the lunar farside, provides a unique opportunity for astronomical observations from an environment shielded from terrestrial radio interference, and thus serves as pathfinder for lunar…

Instrumentation and Methods for Astrophysics · Physics 2026-05-11 Jian-Kang Li , Zhen-Zhao Tao , Bo-Lun Huang , Kang-Jiao , Tong-Jie Zhang , Ming-Yuan Wang , Jin-Song Ping , Dan Werthimer , Vishal Gajjar

Exoplanets with and without a magnetic field are predicted to form, behave, and evolve very differently. Therefore, there is great need to directly constrain these fields to holistically understand the properties of exoplanets including…

The potential effect of the lunar exosphere on the near-ultraviolet sky background emission is predicted for Lunar-based Ultraviolet Telescope (LUT: a funded Chinese scientific payload for the Chang'e-III mission). Using the upper limit on…

Earth and Planetary Astrophysics · Physics 2015-05-30 J. Wang , J. S. deng , J. Cui , L. Cao , Y. L. Qiu , J. Y. Wei

The ultra-long wavelength sky ($\nu\lesssim 30$ MHz) is still largely unexplored, as the electromagnetic wave is heavily absorbed and distorted by the ionosphere on Earth. The far-side of the Moon, either in lunar-orbit or on lunar-surface,…

Astrophysics of Galaxies · Physics 2025-11-04 Qige Ao , Furen Deng , Yidong Xu , Bin Yue , Huanyuan Shan , Xuelei Chen

Several radio telescopes have been planned or proposed to be deployed on the Lunar farside in the coming years. These will observe the unexplored ultra-long wavelengths of the electromagnetic spectrum from the lunar farside's unique…

Instrumentation and Methods for Astrophysics · Physics 2025-10-17 Nivedita Mahesh , Judd D Bowman , Bharat Gehlot , Danny Jacobs

In this paper, we propose a novel physics-informed deep learning architecture for predicting radio maps over lunar terrain. Our approach integrates a physics-based lunar terrain generator, which produces realistic topography informed by…

Signal Processing · Electrical Eng. & Systems 2025-09-19 Paolo Torrado , Anders Pearson , Jason Klein , Alexander Moscibroda , Joshua Smith

Detecting primordial fluctuations from the cosmic dark ages requires extremely large low-frequency radio telescope arrays deployed on the far side of the Moon. The antenna of such an array must be lightweight, easily storable and…

Instrumentation and Methods for Astrophysics · Physics 2024-08-20 Suonanben , Fengquan Wu , Kai He , Shijie Sun , Wei Zhou , Minquan Zhou , Cong Zhang , Jiaqin Xu , Qisen Yan , Shenzhe Xu , Jiacong Zhu , Zhao Wang , Ke Zhang , Haitao Miao , Jixia Li , Yougang Wang , Tianlu Chen , Xuelei Chen

The Radio wave Observations at the Lunar Surface of the photoElectron Sheath (ROLSES) instrument is a radio telescope system designed to characterize the radio and plasma wave environment of the nearside lunar surface at frequencies between…

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