Read or download the official PDF of this gazette notification issued by the Ministry of Science and Technology on 29th July 2026. Classified under Press Release.
Executive Summary
The document commemorates the 25th anniversary of the 2-m Himalayan Chandra Telescope (HCT) in Hanle, Ladakh, celebrated through a three-day science conference starting July 28, 2026. It highlights the facility’s history, its unique remote-operation capabilities from Bengaluru, and its significant contributions to global astronomical research. Key future milestones include the budgetary announcement for a 3.7-m upgraded HCT and a 13.7-m National Large Optical-infrared Telescope.
Key Points / Main Content
Operational Achievements and Infrastructure
The 2-m HCT has completed 25 years of successful operations at Hanle, a high-altitude desert site at 4517 metres above sea level.
Since June 2001, the telescope has been operated remotely in real-time from the IIA campus in Hosakote, Bengaluru, via a dedicated INSAT-3B satellite link.
The Hanle site offers over 250 usable nights a year with minimal light pollution and low atmospheric water vapour.
The Indian Astronomical Observatory now hosts additional facilities, including the GROWTH-India Telescope and gamma ray telescopes MACE and HAGAR.
Scientific Contributions
Key research areas include the study of supernovae, stellar spectroscopy, exoplanets, comets, and extragalactic research.
The telescope contributed to the discovery of the Trappist 1b exoplanet and the study of optical afterglows from gamma ray bursts.
Current instrumentation includes the HFOSC (optical spectrograph and camera), uTIRSPEC (near-infrared spectrometer), and HESP (high-resolution Echelle spectrograph).
Future Developments and Capacity Building
The government has announced plans for a 3.7-m Upgraded HCT and a 13.7-m National Large Optical-infrared Telescope at Hanle.
The Hanle Dark Sky Reserve was recently established to preserve the site's pristine conditions for future astronomical facilities.
A commemorative coffee table book and a dynamic model of the HCT were unveiled during the conference to mark the silver jubilee.
Impact Analysis
Indian Institute of Astrophysics (IIA)Impact
The IIA is recognized as the nodal agency for high-altitude astronomical facilities and is tasked with leading the development of new, larger-scale telescope projects.
Action Required
The institute must manage the technical development and implementation of the newly announced 3.7-m and 13.7-m telescopes.
Indian Astronomical CommunityImpact
Researchers gain access to enhanced observational capacity and state-of-the-art instrumentation, allowing India to remain globally competitive in optical and infrared astronomy.
Action Required
Astronomers and researchers are expected to utilize the upcoming facilities to advance research in stellar astrophysics and extragalactic studies.
Department of Science and Technology (DST)Impact
The DST is responsible for providing the necessary budgetary support and policy framework to bolster the capacity of the Hanle site.
Action Required
The department must oversee the allocation of funds for the site upgrades and ensure the successful execution of the projects announced in the budget.
Key Entities Referenced
Himalayan Chandra Telescope (HCT): A 2-meter optical-infrared telescope operated by the Indian Institute of Astrophysics at Hanle, Ladakh, used for significant astronomical research and observations.
Indian Institute of Astrophysics (IIA): An autonomous institution under the Department of Science and Technology and the nodal agency responsible for the Indian Astronomical Observatory's facilities.
Hanle, Ladakh: The primary high-altitude site in the trans-Himalayan region central to India's optical and near-infrared astronomical infrastructure.
National Large Optical-infrared Telescope: A planned 13.7-meter telescope project at Hanle intended to significantly advance the scale of Indian astronomical research.
Hanle Dark Sky Reserve: A recently established initiative aimed at preserving the pristine dark skies of the Hanle region for future astronomical observations.
Ministry of Science & Technology
Celebrating 25 years of the Himalayan Chandra
Telescope in Hanle
प्रव तथ: 29 JUL 2026 4:47PM by PIB Delhi
25 years of the successful operations of the 2-m Himalayan Chandra Telescope (HCT) atop Hanle in
Ladakh was celebrated with a conference highlighting its history, engineering challenges, scientific
research, and the road ahead.
Prof. Umesh Waghmare, Secretary, Department of Science and Technology (DST) underlined the need to
bolster the capacity of the site of telescope with the upgraded HCT announced in the budget, while
speaking online at the inauguration of the 3- day conference.
Highlighting that Hanle is India’s primary high-altitude facility which has trained generations of
astronomers, he congratulated the fraternity at the Indian Institute of Astrophysics (IIA) for maintaining
the world class facility in such a challenging location, through collective efforts.
“A unique feature of the telescope is that it has been operated remotely in real time from IIA’s campus in
Hosakote in Bengaluru, since June 2001, through a dedicated INSAT-3B satellite link from ISRO. The site
has more than 250 usable nights a year, and with a precipitable water vapour of less than 2.5 mm with
highly transparent skies, is ideal for near-infrared observations as well. The telescope yielded its very first
scientific result in 2001, with a paper studying the optical afterglow of a gamma ray burst”, said Prof
Annapurni Subramaniam, Director IIA.
Dr. S, Somanath, Chairperson of the IIA’s Governing Council and former Chair of ISRO, spoke about the
scientific research done with HCT on supernovae, stellar spectroscopy, and exoplanets.
The conference has brought together astronomers from across India, including 70 users of the HCT to
present their research using the HCT and discuss the plans for future telescopes, at a 3 day science
meeting.
A special session was organised by the IIA on July 28 to summarise the telescope’s achievements, reflect
on its history, and felicitate the people who were involved in the development of the Observatory.
A coffee table book about the HCT, and a dynamic model of the telescope were also unveiled.
Establishing an optical telescope in the trans-Himalayan region had been the dream of the Indian
astronomical community for many decades. Following suggestions made by a panel set up by the Planning
Commission, the IIA an autonomous institution of the DST, was identified in 1989 as the nodal agency to
identify a suitable location for optical and infrared facilities. Starting in 1993, teams of astronomers
explored six different locations in the Himalayas, and zeroed in on Digpa Ratsa Ri, a mountain top in
Hanle at 4517 metres above sea level, in the cold high-altitude desert in Ladakh.
With a large number of clear nights due to the Himalayas obstructing the monsoons, a very low
atmospheric water vapour, and minimal light pollution from manmade sources, Hanle was selected as one
of the ideal locations for optical and near-infrared astronomy in India.A telescope of 2-m diameter was decided on, with a proposal to develop the site in the future to house
much larger telescopes. The foundation stone for the Indian Astronomical Observatory was laid in 1997.
The telescope saw its ‘First Light’ on 26 September 2000, and was dedicated to the nation in August 2001.
It was named the ‘Himalayan Chandra Telescope’, or HCT, after the Nobel Laureate Subramanyan
Chandrasekhar.
Currently, the HCT hosts HFOSC (a spectrograph and camera in the optical), uTIRSPEC (a near-infrared
spectrometer and imager), and HESP (a high-resolution Echelle spectrograph).
HCT is used by astronomers from across India, to study objects as varied as planets and asteroids, to stars
and galaxies.
Some research highlights have been spectroscopy of comets, study of atmospheres of exo-planets, and
participation in the discovery of the famous Trappist 1b exoplanet in the field of planetary science. Stellar
astrophysics has been a key area of study, with research on nebulae, infrared imaging of star forming
regions, long term monitoring of young stellar objects and variable stars, spectroscopic surveys of binary
systems and emission line stars, extended surveys of stars with peculiar chemical compositions. Novae
and supernovae, and their expanding shells, are also an important area of research using HCT.
Extragalactic research involves study of mixed stellar populations, low surface brightness galaxies, lensed
quasars, interacting galaxies, and reverberation mapping of active galactic nuclei.
Since the installation of the HCT, Hanle has attracted astronomers from many institutions to set up their
telescopes at this pristine site as well. The Observatory currently hosts the GROWTH-India Telescope
(with IITB) along with the two gamma ray telescopes MACE and HAGAR (with BARC and TIFR) along
with many atmospheric research instruments, and will be hosting new telescopes from ISRO, RRI and
other institutions as well.
The recently setup Hanle Dark Sky Reserve aims to preserve the dark skies for future facilities as well.
In a major fillip to the site as well as to Indian astronomy, the recent budget announcement mentioned the
setting up of the 3.7-m Upgraded HCT and the 13.7-m National Large Optical-infrared Telescope at
Hanle, to be led by IIA. Driven by the experience gained from HCT, these will help leapfrog Indian
astronomy to the next level while taking advantage of the site of Hanle, which remains a globally
competitive location for astronomy.
Fig 1: Secretary DST Prof Umesh Waghmare addressing the conference onlineFig: 2 Dr. S, Somanath, Chairperson of the IIA’s Governing Council & Prof Annapurni Subramaniam,
Director IIA releasing coffee table book on HCT
Fig: 3 Group photos of dignitaries
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