For heliocentric B-DECIGO, DECIGO, LISA, and TAIJI, maintaining constant equal arms is affordable in propellant, while geocentric B-DECIGO is fuel-heavy; proof-mass actuation noise remains open.
Using Atomic Clocks to Detect Gravitational Waves
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abstract
Atomic clocks have recently reached a fractional timing precision of $<10^{-18}$. We point out that an array of atomic clocks, distributed along the Earth's orbit around the Sun, will have the sensitivity needed to detect the time dilation effect of mHz gravitational waves (GWs), such as those emitted by supermassive black hole binaries at cosmological distances. Simultaneous measurement of clock-rates at different phases of a passing GW provides an attractive alternative to the interferometric detection of temporal variations in distance between test masses separated by less than a GW wavelength, currently envisioned for the eLISA mission.
fields
gr-qc 1years
2019 1verdicts
CONDITIONAL 1representative citing papers
citing papers explorer
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Orbit design and thruster requirement for various constant-arm space mission concepts for gravitational-wave observation
For heliocentric B-DECIGO, DECIGO, LISA, and TAIJI, maintaining constant equal arms is affordable in propellant, while geocentric B-DECIGO is fuel-heavy; proof-mass actuation noise remains open.