Two-photon amplitude interferometry for precision astrometry
arXiv:2010.09100 · doi:10.21105/astro.2010.09100
Abstract
Improved quantum sensing of photons from astronomical objects could provide high resolution observations in the optical benefiting numerous fields, including general relativity, dark matter studies, and cosmology. It has been recently proposed that stations in optical interferometers would not require a phase-stable optical link if instead sources of quantum-mechanically entangled pairs could be provided to them, potentially enabling hitherto prohibitively long baselines. A new refinement of this idea is developed, in which two photons from different sources are interfered at two separate and decoupled stations, requiring only a slow classical information link between them. We rigorously calculate the observables and contrast this new interferometric technique with the Hanbury Brown & Twiss intensity interferometry. We argue this technique could allow robust high-precision measurements of the relative astrometry of the two sources. A basic calculation suggests that angular precision on the order of ~microarcsecond in the relative opening angle could be achieved in a single night's observation of two bright stars.
22 pages, 5 figures; to be submitted to Open Journal of Astrophysics
References in corpus (6)
- Gaia Early Data Release 3: The astrometric solution
- First M87 Event Horizon Telescope Results. II. Array and Instrumentation
- Imaging and time stamping of photons with nanosecond resolution in Timepix based optical cameras
- The parallax zero point offset from Gaia EDR3 data
- Witnessing trustworthy single-photon entanglement with local homodyne measurements
- Precision Astrometry with Adaptive Optics
Cited by in corpus (9)
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- Towards Quantum Telescopes: Demonstration of a Two-Photon Interferometer for Quantum-Assisted Astronomy
- Phase Dependent Hanbury-Brown and Twiss effect
- Probing and resolving AGN disks with ultrafast photon counters
- Fast data-driven spectrometer with direct measurement of time and frequency for multiple single photons
- Fast imaging of single photons in quantum assisted optical interferometers