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In an October 2024 milestone, scientists at NASA’s Jet Propulsion Laboratory completed the integration of the Roman Coronagraph Instrument onto the Nancy Grace Roman Space Telescope, an upcoming observatory set for launch in May 2027. This highly advanced coronagraph, capable of detecting planets up to 100 million times dimmer than their host stars, has been crafted to block out starlight to make the faint light of exoplanets visible. The integration marks a key step toward developing technology that could one day help NASA locate Earth-like planets in other solar systems.

Coronagraph Instrumentation and Technology Demonstration

The Roman Coronagraph, approximately the size of a baby grand piano, comprises an intricate system of masks, prisms, and mirrors that work in concert to obstruct starlight. According to Rob Zellem, Deputy Project Scientist for Roman Telescope Communications, the instrument aims to demonstrate technologies critical for future space telescopes like the proposed Habitable Worlds Observatory, designed to find life-supporting exoplanets. The Instrument Carrier, which houses the coronagraph, was attached to the Roman Telescope at NASA’s Goddard Space Flight Center. This section, often described as the “skeleton” of the observatory, will soon be integrated with Roman’s primary science instrument, the Wide Field Instrument, completing the telescope’s core.

Exoplanet Imaging: Beyond Traditional Transit Detection

Currently, most exoplanet discoveries rely on a method called transiting, which measures the dimming of a star when a planet crosses in front of it. However, this technique is limited by the rare alignment of planetary orbits with Earth’s line of sight. Direct imaging, particularly through coronagraphy, is an emerging method that allows scientists to observe planets without relying on transit events. While ground-based telescopes have had some success using coronagraphs, such as imaging planets orbiting the star HR 8799, the Roman Coronagraph’s advanced design promises to achieve unprecedented sensitivity in space.

Next Steps for NASA’s New Telescope

With the coronagraph now successfully integrated, NASA’s engineering team will perform a series of system checks before installing the Wide Field Instrument later this year. Liz Daly, Lead for Integrated Payload Assembly at Goddard, emphasized the collaborative efforts of various teams in bringing the Roman observatory closer to completion. The Roman Telescope’s ability to explore dark energy, exoplanets, and infrared astrophysics will set a new standard in space observation.

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Mystery Deepens as Interstellar Comet 3I/ATLAS Brightens Unexpectedly Near the Sun

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Interstellar comet 3I/ATLAS defied expectations during its 2025 solar flyby, brightening far faster than predicted. Observatories worldwide recorded a blue coma rich in exotic gases, suggesting unique chemistry from another star system. Scientists are investigating whether its unusual composition or speed caused the outburst, marking a new interstellar mystery.

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Is the Universe Slowing Down? Astronomers Detect Signs of Fading Dark Energy

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Astronomers from Yonsei University and DESI data analyses indicate dark energy, long believed constant, may be weakening. Corrected supernova results hint that cosmic acceleration is slowing—a possible “cosmic slowdown.” If true, this could help resolve the Hubble tension and redefine how the universe’s expansion and ultimate fate are understood.

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Scientists Create Bullet-Proof Fiber Stronger and Thinner Than Kevlar

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Researchers have created a new fiber that surpasses Kevlar in bullet-stopping power while being much thinner. Made by aligning advanced aramid chains with carbon nanotubes, the material absorbs over twice as much energy as previous record-holding fibers. The breakthrough could lead to lighter, stronger armor for military, law enforcement and personal safety uses.

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