Initial acquisition requirements for optical cavities in the space gravitational wave antennae DECIGO and B-DECIGO
arXiv:2503.12960 · doi:10.1088/1361-6382/ae1b61
Abstract
DECIGO (DECi-hertz Interferometer Gravitational Wave Observatory) is a space-based gravitational wave antenna concept targeting the 0.1-10 Hz band. It consists of three spacecraft arranged in an equilateral triangle with 1,000 km sides, forming Fabry-Pérot cavities between them. A precursor mission, B-DECIGO, is also planned, featuring a smaller 100 km triangle. Operating these cavities requires ultra-precise formation flying, where inter-mirror distance and alignment must be precisely controlled. Achieving this necessitates a sequential improvement in precision using various sensors and actuators, from the deployment of the spacecraft to laser link acquisition and ultimately to the control of the Fabry-Pérot cavities to maintain resonance. In this paper, we derive the precision requirements at each stage and discuss the feasibility of achieving them. We show that the relative speed between cavity mirrors must be controlled at the sub-micrometer-per-second level and that relative alignment must be maintained at the sub-microradian level to obtain control signals from the Fabry-Pérot cavities of DECIGO and B-DECIGO.
16 pages, 4 figures
References in corpus (34)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- TianQin: a space-borne gravitational wave detector
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- Exploring the Sensitivity of Next Generation Gravitational Wave Detectors
- Search for an isotropic gravitational-wave background with the Parkes Pulsar Timing Array
- Searching for the nano-Hertz stochastic gravitational wave background with the Chinese Pulsar Timing Array Data Release I
- Interferometer design of the KAGRA gravitational wave detector
- The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals
- Possibility of Direct Measurement of the Acceleration of the Universe Using 0.1 Hz Band Laser Interferometer Gravitational Wave Antenna in Space
- Beyond LISA: Exploring Future Gravitational Wave Missions
- Taiji Program: Gravitational-Wave Sources
- The TianQin project: current progress on science and technology
- On orbit performance of the GRACE Follow-On Laser Ranging Interferometer
- Gravitational Radiation Detection with Laser Interferometry
- Probing reheating temperature of the universe with gravitational wave background
- The Missing Link in Gravitational-Wave Astronomy: Discoveries waiting in the decihertz range
- 113 km Free-Space Time-Frequency Dissemination at the 19th Decimal Instability
- Low-Frequency Terrestrial Gravitational-Wave Detectors
- Lunar Gravitational-Wave Antenna
- Astrophysics and cosmology with a decihertz gravitational-wave detector: TianGO
- Multiband Observation of LIGO/Virgo Binary Black Hole Mergers in the Gravitational-wave Transient Catalog GWTC-1
- Stochastic gravitational-wave background in quantum gravity
- Angular instability due to radiation pressure in the LIGO gravitational wave detector
- Improvement of the target sensitivity in DECIGO by optimizing its parameters for quantum noise including the effect of diffraction loss
- Doppler-Induced Dynamics of Fields in Fabry-Perot Cavities with Suspended Mirrors
- Mirror actuation design for the interferometer control of the KAGRA gravitational wave telescope
- Gravitational Wave (GW) Classification, Space GW Detection Sensitivities and AMIGO (Astrodynamical Middle-frequency Interferometric GW Observatory)
- Formation-flying interferometry in geocentric orbits
- A back-linked Fabry-Perot interferometer for space-borne gravitational wave observations
- First-step experiment in developing optical-spring quantum locking for DECIGO: sensitivity optimization for simulated quantum noise by completing the square
- SILVIA: Ultra-precision formation flying demonstration for space-based interferometry
- Demonstration of a dual-pass differential Fabry-Perot interferometer for future interferometric space gravitational wave antennas
- Experimental Demonstration of Back-Linked Fabry-Perot Interferometer for the Space Gravitational Wave Antenna