Read or download the official PDF of this gazette notification issued by the Ministry of Science and Technology on 27th July 2026. Classified under Press Release.
Executive Summary
On 27 July 2026, the Ministry of Science & Technology reported that Indian astronomers have discovered a Blue Straggler Star (BSS) caught in the act of formation within the binary system TIC 327546480. This rare discovery provides direct observational evidence for the theory that these stars rejuvenate by gaining mass from companion stars. The findings, published in The Astrophysical Journal Letters, offer a new laboratory for testing theories of binary evolution and stellar rejuvenation in star clusters.
Key Points / Main Content
The Discovery
Astronomers identified an actively forming BSS in the "Collinder 261" star cluster, located 9500 light-years away.
This discovery provides rare direct evidence for the "mass transfer" theory, explaining how BSSs become hotter and more massive than their peers.
The research was led by the Indian Institute of Astrophysics (IIA) in collaboration with Gauhati University and international partners.
Mechanism of Formation
The system is "semidetached," meaning a less massive companion star has expanded beyond its gravitational boundary (Roche lobe) to transfer matter to the BSS.
Ongoing accretion is confirmed by the detection of strong X-ray emissions from the system.
The BSS is rotating rapidly at 69.55 km/s, likely spun up by the momentum of the incoming material.
Technical Specifications
The BSS mass is approximately 1.67 times that of the Sun, while its donor companion is 0.32 solar mass.
The binary system has a short orbital period of 2.11 days and a low mass ratio of 0.19.
Evolutionary modeling indicates mass transfer began 5.46 billion years ago, while the cluster itself is roughly 7 billion years old.
Research Methodology
The study utilized high-precision light curves from NASA’s TESS mission.
Researchers combined space data with radial velocity measurements from the Very Large Telescope at the European Southern Observatory in Chile.
Impact Analysis
Scientific Community (Astrophysicists)
Impact: The discovery resolves a decades-old mystery regarding stellar origins and provides a unique case study for binary evolution.
Action Required: Researchers should utilize this system as a laboratory for testing and refining theories of stellar rejuvenation and star cluster dynamics.
Department of Science and Technology (DST) / IIA
Impact: Highlights the success of the INSPIRE fellowship program and the global contribution of Indian autonomous institutes in high-impact space science.
Action Required: Continue facilitating international collaborations and supporting specialized research programs that yield high-precision observational data.
Academic Researchers / Ph.D. Students
Impact: Demonstrates the viability of using combined data from international space missions (TESS) and ground-based telescopes for breakthrough discoveries.
Action Required: Model future studies on this multi-mission approach to identify similar rare stellar phenomena in other star clusters.
Key Entities Referenced
Indian Institute of Astrophysics (IIA): An autonomous institute under the Department of Science and Technology that led the research and discovery of the actively forming Blue Straggler Star.
Department of Science and Technology (DST): The central government department that oversees the IIA and manages the INSPIRE programme supporting the study's researchers.
INSPIRE programme: A government initiative under the DST that provided the fellowship supporting the lead author's doctoral research and scientific contribution.
Ministry of Science & Technology: The primary government ministry responsible for overseeing astronomical research and reporting major scientific breakthroughs in India.
Ministry of Science & Technology
Astronomers discover an actively forming
luminous blue straggler star
प्रव तथ: 27 JUL 2026 5:45PM by PIB Delhi
Indian astronomers, along with their international collaborators, have reported the rare discovery of a Blue
Straggler Star (BSS) caught in the act of formation, providing direct evidence of how such stars are
created.
Blue Straggler Stars (BSS) are a peculiar class of stars found in star clusters that appear hotter, brighter,
and more massive than their peers, and have long puzzled astronomers seeking to understand their origin
and evolution.
The most widely accepted explanation is that these stars gain mass from a companion or through stellar
mergers, effectively rejuvenating themselves. Yet, direct observational evidence of such formation
processes has remained extremely rare.
To investigate this, astronomers from Indian Institute of Astrophysics (IIA), an autonomous institute of the
Department of Science and Technology (DST) studied a remarkable binary star system TIC 327546480 in
the old open star cluster Collinder 261, located about 9500 light-years away.
The system was identified as a promising candidate for further investigation since its properties suggested
ongoing interaction between the two stars. The study combined high-precision light curves from NASA's
TESS space mission with radial velocity measurements obtained using the Very Large Telescope operated
by the European Southern Observatory in Chile.
“We discovered that the Blue Straggler is actively gaining material from its companion star, providing a
rare glimpse of a BSS caught in the act of formation. Our finding offers direct observational evidence for
one of the leading theories proposed to explain the origin of BSSs”, explained Annapurni Subramaniam,
faculty member at the IIA, and a co-author of the study.
Fig: A photorealistic visualization of an Algol-type binary system in Collinder 261, capturing the active
mass transfer from a Roche-lobe-filling donor to a rapidly spinning BSS.They found the binary system to be semidetached, meaning that one of the two stars has expanded enough
to overflow its gravitational boundary, known as the Roche lobe, causing the less massive companion star
to transfer matter to the BSS. This ongoing mass transfer from the less massive companion to the BSS
confirms that the rejuvenation process is still taking place, making the system one of the clearest examples
of a forming blue straggler identified so far.
The researchers also detected strong X-ray emission from the system. Such X-ray activity is expected
when material transferred from the companion is being accreted by the BSS, providing independent
evidence that mass transfer is currently ongoing.
“Detailed analysis showed that the BSS has a mass of about 1.67 times that of the Sun and is accreting
matter from a companion with a mass of about 0.32 solar mass.
The binary has an orbital period of 2.11 days, a low mass ratio of approximately 0.19, and the BSS rotates
rapidly at about 69.55 km/s, likely spun up by the accreted material. Evolutionary modelling suggests that
mass transfer began around 5.46 billion years ago and continues to the present day, while the cluster itself
is estimated to be about 7 billion years old”, said Ali Hasan Sheikh, a Ph.D. student at Gauhati University
and the first author of the study, and an INSPIRE Fellow under the INSPIRE programme of the
Department of Science and Technology, Government of India.
“This discovery provides one of the strongest pieces of direct observational evidence yet for the formation
of BSSs through mass transfer in binary systems, helping to resolve a decades-old mystery in stellar
astrophysics,” explains Ram Sagar, faculty member at IIA, and a co-author of the study. By capturing a
BSS in the act of formation, the system offers a unique laboratory for testing theories of binary evolution
and stellar rejuvenation, with important implications for understanding the evolution of star clusters and
interacting stars throughout the Universe.
The results of this work have been published in the Astrophysical Journal Letters, authored by Ali Hasan
Sheikh, Biman J. Medhi and. Hitendra Sarkar from Gauhati University, Annapurni Subramaniam and Ram
Sagar from the Indian Institute of Astrophysics, Bengaluru; Sergio Messina from the INAF Italy, Anupam
Bharadwaj and. Susmita Das from the IUCAA Pune, Atila Poro from LUX Observatoire de Paris, France;
and Marina Kounkel from the University of North Florida, USA.
Publication Link: https://iopscience.iop.org/article/10.3847/2041-8213/ae6270
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(रलीज़ आईडी: 2290027) आगंतुक पटल : 2083
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