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Time-Delay Interferometry with optical frequency comb

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arxiv 1502.06651 v1 pith:MSTLKF52 submitted 2015-02-23 gr-qc physics.optics

Time-Delay Interferometry with optical frequency comb

classification gr-qc physics.optics
keywords phaselaserheterodynemeasurementsadditionalbeamsclocksfrequency
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Heterodyne laser phase measurements in a space-based gravitational wave interferometer are degraded by the phase fluctuations of the onboard clocks, resulting in unacceptable sensitivity performance levels of the interferometric data. In order to calibrate out the clock phase noises it has been previously suggested that additional inter-spacecraft phase measurements must be performed by modulating the laser beams. This technique, however, considerably increases system complexity and probability of subsystem failure. With the advent of self-referenced optical frequency combs, it is possible to generate the heterodyne microwave signal that is coherently referenced to the onboard laser. We show in this case that the microwave noise can be cancelled directly by applying modified second-generation Time-Delay Interferometric combinations to the heterodyne phase measurements. This approach avoids use of modulated laser beams as well as the need of additional ultra-stable oscillator clocks.

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  1. Clock-noise subtraction in geometric time-delay interferometry for space-based gravitational-wave parameter estimation

    gr-qc 2026-07 conditional novelty 6.0

    Generalized clock-noise observables for the four delay/advance link types cancel USO residuals in arbitrary two-path geometric TDI, restoring sensitivity and tightening monochromatic-source parameter constraints.