Please use this identifier to cite or link to this item: http://hdl.handle.net/2289/8719
Title: Site Quality Analysis for an Indian Submillimeter Telescope: A Reanalysis-based Approach
Authors: Singh, Tanmay
Rao, Mayuri Sathyanarayana
Thakur, Ritoban Basu
Keywords: Observational astronomy
Observatories
Telescopes
Water vapor
Astronomical instrumentation
Submillimeter astronomy
Atmospheric effects
Radiative transfer
Remote sensing
Earth atmosphere
Issue Date: 7-May-2026
Publisher: American Astronomical Society
Citation: The Astronomical Journal, 2026, Vol. 171 (6), AR No. 331
Abstract: The Himalayan plateau region of Ladakh, India, is a potential host for a science-class submillimeter observatory, building on existing astronomical infrastructure near Hanle and Merak. Using the fifth-generation European Centre for Medium-Range Weather Forecasts Reanalysis (ERA5) data, we analyze precipitable water vapor (PWV) at monthly resolution over 184 months from 2010 January to 2025 April, map PWV statistics across Ladakh, and identify candidate regions that reach PWV ≤1 mm. For promising locations, we compute atmospheric transmittance and the corresponding atmospheric photon-noise using the am (Atmospheric Model) radiative transfer code; we present transmittance and brightness temperature estimates over 10–1000 GHz and compare the inferred performance to sites hosting current or planned submillimeter facilities worldwide. We find Ladakh to be favorable for submillimeter observations, with multiple ERA5 grid cells reaching PWV ≤ 1 mm. Within ERA5’s spatial resolution, two regions emerge as particularly promising: Site A (≈34.25∘N, 78.75∘E) and Site B (≈32.50∘N, 79.00∘E), which satisfy PWV ≤1 mm for about 23% and 19% of the study duration, respectively, compared to about 5% and 8% for the Hanle and Merak grid cells. These results motivate targeted in situ radiometer measurements for final site selection.
Description: Open Access. Also available at arXiv.org
URI: http://hdl.handle.net/2289/8719
ISSN: 1538-3881
Alternative Location: https://doi.org/10.48550/arXiv.2604.13487
https://doi.org/10.3847/1538-3881/ae5e4e
Copyright: © 2026. The Author(s).
Appears in Collections:Research Papers (A&A)

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