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Home India Ministry of Education Notifications A Pair of Dead Stars Locked in a Six-Minute Orbit,... (Official PDF)
Date: 12th August 2026 Category: Press Release Jurisdiction: India, Central Government

A Pair of Dead Stars Locked in a Six-Minute Orbit, Rapidly Spiraling Inward

Issued by Ministry of Education

Read or download the official PDF of this gazette notification issued by the Ministry of Education on 12th August 2026. Classified under Press Release.

Executive Summary & Key Takeaways

Executive Summary On August 12, 2026, the Ministry of Education announced that an Indian-led team of astronomers discovered an ultracompact binary system, eRASSU J0608, consisting of two white dwarfs in a rapid six-minute orbit. The study, published in The Astrophysical Journal Letters, identifies the system as a critical verification source for future gravitational-wave observatories. Researchers from the Inter-University Centre for Astronomy and Astrophysics (IUCAA) will continue monitoring the system to refine data for upcoming space missions.

Key Points / Main Content

Discovery and System Characteristics

  • System Identity: Known as eRASSU J0608, the system consists of two white dwarfs—dense cores of dead stars—orbiting each other every six minutes.
  • Extreme Orbit: The orbit is shrinking exceptionally fast, a process that radiates energy in the form of gravitational waves at a rate exceeding most known similar systems.
  • Direct-Impact Accretion: The proximity of the stars causes "direct-impact accretion," heating surfaces to over a million degrees and producing X-ray pulses every 374 seconds.
  • Observation Tools: The discovery utilized data from the Chinese-led Einstein Probe, NASA’s NICER telescope, the SRG eROSITA all-sky survey, and the XMM-Newton observatory.

Scientific Measurements

  • Orbital Decay: Tracking over a 3.5-year baseline confirmed a decay rate faster than established systems HM Cnc and V407 Vul.
  • Chirp Mass: The combined "chirp mass" is estimated at 0.43 times the mass of the Sun, representing one of the highest values known for this class of object.
  • Signal Predictability: The strength and predictability of the system’s gravitational-wave signals make it a primary target for future space-based detection.

Impact Analysis

Indian Astronomers (IUCAA, Pune) Impact Led by Dr. Rahul Sharma and Prof. Chandreyee Maitra, the team has established a significant benchmark in the study of compact binaries and gravitational-wave sources. Action Required The team plans to continue monitoring the system with X-ray telescopes and initiate a search for a visible-light counterpart to pin down distance and mass more precisely.

Future Space-Based Observatories (e.g., ESA’s LISA) Impact The European Space Agency’s planned Laser Interferometer Space Antenna (LISA) mission is designed to detect gravitational waves from such compact systems. Action Required Data from eRASSU J0608 will be used to sharpen predictions and calibrate what LISA and other future missions will eventually detect.

International Research Community Impact The discovery provides a new, extreme example of stellar evolution and gravitational radiation for the broader astrophysical community. Action Required The findings, published in The Astrophysical Journal Letters, serve as a reference for tracking orbital decay and "chirp mass" in ultracompact binary systems.

Key Entities Referenced

eRASSU J0608: An extreme ultracompact binary system of two white dwarf stars discovered to be spiraling inward at record speed, serving as a critical verification source for future gravitational-wave observatories. Inter-University Centre for Astronomy and Astrophysics (IUCAA), Pune: The Indian research institution that led the international team of astronomers responsible for the discovery and study of the rapidly decaying stellar orbit. Laser Interferometer Space Antenna (LISA): A planned European Space Agency (ESA) mission designed to detect gravitational waves, for which the discovery of eRASSU J0608 provides a promising target for verification. Einstein Probe: A Chinese-led space mission used to observe and track the orbit of the binary star system, providing key data for the discovery. NICER: A NASA telescope mission used to precisely track the orbital period and decay of the white dwarf binary system over multiple years.
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Ministry of Education A Pair of Dead Stars Locked in a Six-Minute Orbit, Rapidly Spiraling Inward eRASSU J0608 emerges as a promising verification source for future space-based gravitational-wave observatories प्रव तथ: 12 AUG 2026 7:04PM by PIB Mumbai Mumbai, 12 August 2026 An international team led by Indian astronomers has found that a pair of dead stars spiralling towards each other at record speed. Using observations from the Chinese-led Einstein Probe mission and NASA’s NICER telescope, the team found that a pair of white dwarfs, the dense dead cores left behind when stars like the Sun run out of fuel, are locked in an extraordinarily tight orbit. That orbit is shrinking fast, a telltale sign that the system is radiating away energy as gravitational waves. The system, originally discovered with the SRG eROSITA all-sky survey, is known as eRASSU J060839.5–704014 (or “eRASSU J0608” for short). The two stars circle each other once every six minutes. Their orbit is decaying faster than almost any other known system of its kind. The study has been led by Dr. Rahul Sharma and Prof. Chandreyee Maitra of the Inter-University Centre for Astronomy and Astrophysics (IUCAA), Pune, and has been published in The Astrophysical Journal Letters (ApJL). White dwarfs are what remain after a Sun-like star exhausts its nuclear fuel and sheds its outer layers. What's left is an extremely dense core roughly the size of Earth but packing the mass of a star. When two white dwarfs end up orbiting each other at very close range, they form what astronomers call an “ultracompact“ binary system. The orbit is so tight that a complete orbit can take just minutes rather than years. These double white-dwarf systems with such extraordinarily short periods are among the most compact binaries known. eRASSU J0608 is one of the most extreme examples known. Astronomers call this “direct- impact accretion”. The impact heats the surface to temperatures of over a million degrees, producing a bright, pulsing glow of X-rays that repeats every 374 seconds, the orbital period of the binary. By combining new observations from the NICER and Einstein Probe missions with earlier data from the XMM-Newton observatory, the team precisely tracked the system's orbit over a baseline of three and a half years. They found that it is shrinking exceptionally rapidly, at a rate even greater than that measured in the two other well-known systems of this class, HM Cnc and V407 Vul. From the measured rate of orbital decay, the team estimates the combined “chirp mass” of the two white dwarfs (a quantity that determines how strong their gravitational-wave signal will be) at about 0.43 times the mass of the Sun, among the highest values known for this class of object.The strength and predictability of the gravitational-wave signal expected from eRASSU J0608 make it a particularly promising target for future space-based gravitational-wave observatories. The European Space Agency's planned LISA (Laser Interferometer Space Antenna) mission is designed to detect gravitational waves from compact systems such as rapidly orbiting stellar remnants. The IUCAA team plans to continue monitoring the system with X-ray telescopes and to search for a visible-light counterpart. That could help pin down its distance and mass more precisely, and sharpen predictions for what LISA and other future missions will eventually detect.* * * PIB Mumbai | Nitin Fulluke/Darshana Rane Follow us on social media: @PIBMumbai /PIBMumbai /pibmumbai pibmumbai[at]gmail[dot]com /PIBMu mbai /pibmumbai (रलीज़ आईडी: 2298536) आगंतुक पटल : 79

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