collaborators

7 papers

astro-ph.IM2026

Noise reduction in suspension control with photon-pressure actuator for CHRONOS gravitational wave detector

Daiki Tanabe, Yuki Inoue, Mario Juvenal S. Onglao

Improving sub-Hz sensitivity of gravitational wave (GW) detectors is important to detect heavier binary black hole mergers and study phenomena in stronger gravity fields. Torsion-b…

physics.ins-det2026

Cryogenic sub-Hz cROss torsion bar detector with quantum NOn-demolition Speed meter (CHRONOS) for gravitational wave detection

Yuki Inoue, Daiki Tanabe, M. Afif Ismail +3

We present the optical design and sensitivity modeling of the Cryogenic sub-Hz cROss torsion-bar detector with quantum NOn-demolition Speed meter (CHRONOS), a triangular Sagnac spe…

physics.ins-det2026

Prospects for Observing Gravity-gradient Noise and Earthquake Gravity Signals with CHRONOS

Mario Juvenal S. Onglao, Yuki Inoue, Daiki Tanabe

Ground-based gravitational-wave detectors operating in the sub-Hertz regime are expected to be strongly limited by environmental gravity-gradient fluctuations, commonly referred to…

physics.ins-det2026

Noise budget of Cryogenic sub-Hz cROss torsion bar detector with quantum NOn-demolition Speed meter (CHRONOS)

Mario Juvenal S. Onglao, Hsiang-Yu Huang, Yuki Inoue +2

CHRONOS is a proposed gravitational-wave detector designed to operate in the sub-Hz frequency range (0.1 to 10 Hz), a largely unexplored band due to strong noise sources that hampe…

astro-ph.IM2026

Science of Cryogenic sub-Hz cROss torsion bar detector with quantum NOn-demolition Speed meter (CHRONOS)

Yuki Inoue, Hsiang-Yu Huang, Vivek Kumar +3

The frequency band between and remains largely unexplored in gravitational-wave astronomy due to strong seismic, Newtonian, and suspension thermal noise that…

astro-ph.IM2026

Instrumental development for Cryogenic sub-Hz cROss torsion bar detector with quantum NOn-demolition Speed meter (CHRONOS)

Daiki Tanabe, Hsiang-Yu Huang, Yuki Inoue +2

Gravitational waves from intermediate-mass black-hole (IMBH) binaries is a probe of strong-field gravity and black-hole evolution. Detection of IMBH is challenging because of their…