System and method for dispersion-enabled quantum state control of photons
View Patent ↗Devices and methods are described for selecting a level of entanglement between two nondegenerate photons. The method may include receiving two non degenerate photons through a single input port of a directional photonic coupler; adjusting one of a first-order coupler dispersion M or a power splitting ratio η(λ00) of the directional optical coupler to select a Δη; and, emitting the photons from corresponding output ports of the directional optical coupler, wherein the emitted photons have a spectral entanglement corresponding to the selected Δη.
1. A method for selecting a level of entanglement between two nondegenerate photons comprising:
receiving the two nondegenerate photons through a single input port of a directional photonic coupler;
adjusting one of a first-order coupler dispersion M or a power splitting ratio η(λ00) of the directional optical coupler to select a Δη;
emitting the two nondegenerate photons from corresponding output ports of the directional optical coupler, wherein the emitted photons have a spectral entanglement corresponding to the selected Δη; and
selecting a level of time-ordering between the two emitted nondegenerate photons by applying a time delay τ to one of the output ports, wherein the time delay converts the selected Δη path-entanglement characteristics into time-ordering characteristics of the emitted photons.
2. The method of claim 1 , wherein the adjusting comprises adjusting a waveguide core-cladding index of the directional optical coupler.
3. The method of claim 1 , wherein the adjusting comprises adjusting a separation of waveguides of the directional optical coupler.
4. The method of claim 1 , further comprising selecting a level of interference visibility at a fixed photon pair anti-bunching (separation) rate for the two nondegenerate photons, wherein the receiving two nondegenerate photons further comprises receiving two nondegenerate photons that are path-entangled across two input ports of the directional optical coupler with a relative phase of θ=π between paths; and, wherein the adjusting comprises: for a given M, adjusting η(λ00) of the directional optical coupler to select a desired interference visibility.
5. A method for selecting a level of entanglement between two nondegenerate photons comprising:
receiving the two nondegenerate photons through a single input port of a directional photonic coupler;
adjusting one of a first-order coupler dispersion M or a power splitting ratio η(λ00) of the directional optical coupler to select a Δη;
emitting the two nondegenerate photons from corresponding output ports of the directional optical coupler, wherein the emitted photons have a spectral entanglement corresponding to the selected Δη; and
selecting a level of interference visibility at a fixed photon pair anti-bunching (separation) rate for the two nondegenerate photons, wherein the receiving the two nondegenerate photons further comprises receiving two nondegenerate photons that are path-entangled across two input ports of the directional optical coupler with a relative phase of θ=π between paths; and, wherein the adjusting comprises: for a given M, adjusting η(λ00) of the directional optical coupler to select a desired interference visibility.
6. The method of claim 5 , wherein the adjusting comprises adjusting a waveguide core-cladding index of the directional optical coupler.
7. The method of claim 5 , wherein the adjusting comprises adjusting a separation of waveguides of the directional optical coupler.
8. The method of claim 5 , further comprising selecting a level of time-ordering between the two nondegenerate photons by applying a time delay τ to one of the output ports, wherein the time delay converts the selected Δη path-entanglement characteristics into time-ordering characteristics of the emitted photons.
9. A device for selecting a level of entanglement between two nondegenerate photons comprising:
a directional optical coupler adapted to receive two nondegenerate photons through a single input port; and,
means for adjusting a power splitting ratio η(λ) between a pair of waveguides of the directional optical coupler to a selected Δη;
wherein emitted photons from the directional optical coupler have a spectral entanglement corresponding to the selected Δη.
10. The device of claim 9 , wherein the means for adjusting the power splitting ratio η(λ) comprises means for adjusting a waveguide core-cladding index of the directional optical coupler.
11. The device of claim 9 , wherein the means for adjusting the power splitting ratio η(λ) comprises means for adjusting a separation of the pair of waveguides of the directional optical coupler.
12. The device of claim 9 , wherein the means for adjusting the power splitting ratio η(λ) comprises a coupling length of the directional optical coupler longer than a minimum necessary value (L=π(4κ(λ 00 ))).
13. The device of claim 9 , further operative to select a level of time-ordering between the two nondegenerate photons, wherein the device further comprises an extended path in one leg of the directional optical coupler, the extended path applying a time delay τ to one of the output ports, wherein the time delay τ converts the selected Δη path-entanglement characteristics into time-ordering characteristics of the emitted photons.
14. The device of claim 9 , further operative to select a level of interference visibility at a fixed photon pair anti-bunching (separation) rate for the two nondegenerate photons, wherein the directional optical coupler is adapted to receive the two nondegenerate photons as path-entangled photons across two input ports of the directional optical coupler with a relative phase of θ=π between paths; and wherein, for a given M, the means for adjusting the power splitting ratio η(λ) of the directional optical coupler is configured to adjust η(λ00) of the directional optical coupler to select a desired interference visibility.