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Deciphering inflation with gravitational waves: Cosmic microwave background polarization vs direct detection with laser interferometers

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PHYSICAL REVIEW D
卷 73, 期 12, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.73.123503

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A detection of the primordial gravitational wave background is considered to be the smoking-gun evidence for inflation. While superhorizon waves are probed with cosmic microwave background (CMB) polarization, the relic background will be studied with laser interferometers. The long lever arm spanned by the two techniques improves constraints on the inflationary potential and validation of consistency relations expected under inflation. If gravitational waves with a tensor-to-scalar amplitude ratio greater than 0.01 are detected by the CMB, then a direct-detection experiment with a sensitivity consistent with current concept studies should be pursued vigorously. If no primordial tensors are detected by the CMB, a direct-detection experiment to understand the simplest form of inflation must have a sensitivity improved by two to 3 orders of magnitude over current plans.

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