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Two-dimensional Control of a Biphoton Joint Spectrum

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arxiv 2311.09660 v1 pith:SL32XO32 submitted 2023-11-16 quant-ph physics.optics

Two-dimensional Control of a Biphoton Joint Spectrum

classification quant-ph physics.optics
keywords jointquantumspectralstatesamplitudecontrolapplicationsapproach
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Control over the joint spectral amplitude of a photon pair has proved highly desirable for many quantum applications, since it contains the spectral quantum correlations, and has crucial effects on the indistinguishability of photons, as well as promising emerging applications involving complex quantum functions and frequency encoding of qudits. Until today, this has been achieved by engineering a single degree of freedom, either by custom poling nonlinear crystal or by shaping the pump pulse. We present a combined approach where two degrees of freedom, the phase-matching function, and the pump spectrum, are controlled. This approach enables the two-dimensional control of the joint spectral amplitude, generating a variety of spectrally encoded quantum states - including frequency uncorrelated states, frequency-bin Bell states, and biphoton qudit states. In addition, the joint spectral amplitude is controlled by photon bunching and anti-bunching, reflecting the symmetry of the phase-matching function.

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