Disco ball satellite delivers most precise test of frame dragging

Astronomers have achieved the most accurate measurement yet of Earth's frame-dragging effect on spacetime using a compact satellite designed for laser tracking.

A team led by Ignazio Ciufolini at the Wuhan Institute of Physics and Mathematics used the LARES-2 satellite, launched in July 2022, to measure the Lense-Thirring effect with an uncertainty of just 0.2 percent. The 294.8-kilogram sphere, covered in 303 retroreflectors, flew in a supplementary orbit with the older LAGEOS satellite to cancel Newtonian perturbations from Earth's oblate shape.

Data from about 200,000 laser ranging observations between July 2022 and June 2025 yielded a drift of 61.3 milliarcseconds per year in the satellites' combined orbits, matching general relativity predictions within one to two parts per thousand. The researchers also removed the dominant K1 lunisolar tide signal by averaging over one full 1,050-day precession cycle.

Ciufolini said the result narrows the allowed parameter space for Chern-Simons gravity theories that modify Einstein's equations. The same analysis produced a refined measurement of the K1 tide strength, which could aid studies of earthquakes.

The satellites are expected to remain in orbit for centuries, allowing future observations to tighten the constraints further.

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Illustration of SpaceX Falcon 9 rocket launching South Korea's CAS500-2 satellite from Vandenberg Space Force Base.
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한국 지구 관측 위성 CAS500-2가 미국에서 성공적으로 발사됐다

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한국의 지구 관측 위성 CAS500-2가 미국 캘리포니아의 Vandenberg Space Force Base에서 SpaceX Falcon 9 로켓으로 성공적으로 발사됐다. 위성은 저궤도에 진입한 후 노르웨이 지상국과 첫 통신에 성공했다. Korea AeroSpace Administration(KASA)은 위성이 정상 작동 중이라고 확인했다.

Researchers have created an artificial intelligence system to analyze millions of Type Ia supernovae using imaging data alone. The approach could sharpen estimates of cosmic distances and probe the nature of dark energy. It is designed for upcoming large-scale surveys by the Vera C. Rubin Observatory.

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The Vera C. Rubin Observatory in Chile has started the Legacy Survey of Space and Time, set to create the most detailed record of the universe ever made.

An international team of physicists has found that quantum collapse models, potentially linked to gravity, introduce a minuscule uncertainty in time itself. This sets a fundamental limit on clock precision, though far below current detection levels. The research, published in Physical Review Research, explores ties between quantum mechanics and gravity.

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Researchers have resolved a long-standing puzzle about Saturn's apparent changing rotation rate. Observations from the James Webb Space Telescope show that the planet's aurora drives a self-sustaining cycle of atmospheric heating and winds. The findings were published in the Journal of Geophysical Research: Space Physics.

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