Hologram of a Single Photon
arXiv:1509.02890 · doi:10.1038/nphoton.2016.129
Abstract
The spatial structure of single photons is becoming an extensively explored resource used for facilitating the free-space quantum key distribution and quantum computation as well as for benchmarking the limits of quantum entanglement generation with orbital angular momentum modes or reduction of the photon free-space propagation speed. Albeit nowadays an accurate tailoring of photon's spatial structure is routinely performed using methods employed for shaping classical optical beams, the reciprocal problem of retrieving the spatial phase-amplitude structure of an unknown single photon cannot be solved using complimentary classical holography techniques exhibiting excellent interferometric precision. Here we introduce a method to record a hologram of a single photon (HSP) probed by another reference photon, based on essentially different concept of quantum interference between two-photon probability amplitudes. Similarly to classical holograms, HSP encodes full information about photon's "shape", i.e. its quantum wavefunction whose local amplitude and phase are retrieved in the demonstrated experiment.
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- Imaging spatio-temporal Hong-Ou-Mandel interference of bi-photon state of extremely high Schmidt number
- Intensity interferometry for holography with quantum and classical light
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- Quantum optics of spin waves through ac Stark modulation
- Quantum holography with biphotons of high dimensionality
- Experimental quantification of genuine four-photon indistinguishability
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- Direct tomography of high-dimensional density matrices for general quantum states of photons
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- Noise Resistant Phase Imaging with Intensity Correlation
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- Two-Photon Interference LiDAR Imaging
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- Quantum holography with single-photon states
- Introduction to gravitational redshift of quantum photons propagating in curved spacetime
- Quantum state tomography of qudits via Hong-Ou-Mandel interference
- Holographic quantum imaging: reconstructing spatial properties via two-particle interference
- Self-referenced hologram of a single photon beam
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- Spectrum-to-position mapping via programmable spatial dispersion implemented in an optical quantum memory
- Mapping and Measuring Large-scale Photonic Correlation with Single-photon Imaging
- Phase-Subtractive Interference and Noise-Resistant Quantum Imaging with Two Undetected Photons
- Different Perspective on Blue Sky Theory: Theory of Single-Photon Scattering on Bound and Free Electrons