activity
20202025
most citedPerformance of the KAGRA detector during the first joint observation with GEO 600 (O3GK)

30 citations · 83 across the 11 of their papers we have counts for

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Showing 2022Show all

5 papers · 1 filter

gr-qc2022

Input optics systems of the KAGRA detector during O3GK

T. Akutsu, M. Ando, K. Arai +246

KAGRA, the underground and cryogenic gravitational-wave detector, was operated for its solo observation from February 25th to March 10th, 2020, and its first joint observation with…

gr-qc2022★ 10 cited

Training Process of Unsupervised Learning Architecture for Gravity Spy Dataset

Yusuke Sakai, Yousuke Itoh, Piljong Jung +11

Transient noise appearing in the data from gravitational-wave detectors frequently causes problems, such as instability of the detectors and overlapping or mimicking gravitational-…

astro-ph.IM2022★ 5 cited

Response of the underground environment of the KAGRA observatory against the air-pressure disturbance from the Tonga volcano eruption on January 15th, 2022

T. Washimi, T. Yokozawa, A. Takamori +11

On January 15, 2022, at 04:14:45 (UTC), the Hunga Tonga-Funga Ha'apai, a submarine volcano in the Tongan archipelago in the southern Pacific Ocean, erupted and generated global sei…

astro-ph.IM2022★ 4 cited

Identifying multichannel coherent couplings and causal relationships in gravitational wave detectors

Piljong Jung, Sang Hoon Oh, Young-Min Kim +4

The gravitational-wave detector is a complex and sensitive collection of advanced instruments that are impacted not only by mechanical/electronics systems but also by the surroundi…

astro-ph.IM2022★ 30 cited

Performance of the KAGRA detector during the first joint observation with GEO 600 (O3GK)

KAGRA Collaboration, H. Abe, R. X. Adhikari +212

KAGRA, the kilometer-scale underground gravitational-wave detector, is located at Kamioka, Japan. In April 2020, an astrophysics observation was performed at the KAGRA detector in…