New method for gravitational wave detection with atomic sensors.
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Terrestrial Gravity Fluctuations.Note: Directly measuring the direct digital synthesizer frequency chirp-rate for an atom interferometer.Quantum Emulation of Gravitational WavesA portable magneto-optical trap with prospects for atom interferometry in civil engineering.Optical atomic phase reference and timing.Steady-State Magneto-Optical Trap with 100-Fold Improved Phase-Space Density.Atom Interferometry with the Sr Optical Clock Transition.Matter wave lensing to picokelvin temperatures.Sensitivity of Atom Interferometry to Ultralight Scalar Field Dark Matter.Double Bragg Interferometry.Conditional ramsey spectroscopy with synchronized atoms.Exploring gravity with the MIGA large scale atom interferometerConcepts and research for future detectorsNASA's Cold Atom Lab (CAL): system development and ground test statusAttractive force on atoms due to blackbody radiationSpace-based detectorsGravitational wave detection with optical lattice atomic clocksA compact and robust diode laser system for atom interferometry on a sounding rocketDesign of a dual species atom interferometer for space
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P2860
New method for gravitational wave detection with atomic sensors.
description
2013 nî lūn-bûn
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2013年の論文
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2013年学术文章
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name
New method for gravitational wave detection with atomic sensors.
@en
New method for gravitational wave detection with atomic sensors.
@nl
type
label
New method for gravitational wave detection with atomic sensors.
@en
New method for gravitational wave detection with atomic sensors.
@nl
prefLabel
New method for gravitational wave detection with atomic sensors.
@en
New method for gravitational wave detection with atomic sensors.
@nl
P2093
P2860
P1476
New method for gravitational wave detection with atomic sensors.
@en
P2093
Jason M Hogan
Mark A Kasevich
Peter W Graham
Surjeet Rajendran
P2860
P304
P356
10.1103/PHYSREVLETT.110.171102
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P577
2013-04-25T00:00:00Z