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    • 2. 发明申请
    • OPTICAL DEVICE
    • US20200150240A1
    • 2020-05-14
    • US16678328
    • 2019-11-08
    • Kabushiki Kaisha Toshiba
    • Jan HUWERRichard Mark StevensonTaofiq ParaisoAndrew James ShieldsJoanna Krystyna Skiba-Szymanska
    • G01S7/481G02B6/42H04B10/50H04B10/70
    • An optical device, comprising: a first semiconductor substrate; a reference laser, configured to generate coherent light; a plurality of first optical components, wherein the reference laser is optically coupled to the plurality of first optical components, wherein each of the plurality of first optical components is configured to output coherent light during a period of time that coherent light from the reference laser is received; a plurality of second optical components, the second optical components configured to produce optical intensity modulation, wherein each of the plurality of first optical components is optically coupled to at least one corresponding second optical component; wherein the plurality of first optical components each comprises a laser, an optical amplifier or a phase modulator, and the plurality of second optical components each comprises a laser, an optical amplifier or an intensity modulator, and wherein when a first optical component comprises a laser or an optical amplifier the at least one corresponding second optical component comprises a laser, an optical amplifier or an intensity modulator, and wherein when a first optical component comprises a phase modulator the at least one corresponding second optical component comprises a laser or an optical amplifier; one or more first controllers, configured to apply phase control signals to said plurality of first optical components to apply a phase shift; one or more second controllers, configured to apply pulse control signals to said plurality of second optical components such that a light pulse is outputted during a period of time that coherent light is received, the relative phase between emitted light pulses from the plurality of second optical components being controlled by the relative phase shifts applied by the one or more first controllers; wherein the reference laser, plurality of first optical components and plurality of second optical components are integrated laterally on the semiconductor substrate in the plane parallel to the surface of the substrate.
    • 7. 发明授权
    • Quantum optical system
    • US09996802B2
    • 2018-06-12
    • US15434413
    • 2017-02-16
    • Kabushiki Kaisha Toshiba
    • Anthony John BennettAndrew James Shields
    • B82Y10/00G06N99/00
    • G06N99/002B82Y10/00Y10S977/774Y10S977/819Y10S977/951
    • An optical system comprising a charged quantum dot having, a charged carrier, first and second ground state levels and a plurality of excited state levels, the first and second ground state energy levels having different spin states such that the said charged carrier cannot transfer between the first and second ground state energy levels without changing its spin state, the system further comprising a controller adapted to control a first radiating beam with energy not more than 100 micro-eV from a first transition within said quantum dot from a first ground state level to a selected excited state level from the plurality of excited state levels to, the system being adapted to enhance the decay rate of a second transition within said quantum dot from the selected excited state level to a second ground state level, but not a first transition, such that a photon is produced due to scattering of a photon from the first radiating beam, wherein the controller is adapted to irradiate the quantum dot with the first radiating beam for a time longer than the radiative lifetime of the selected excited state to produce just one photon, and wherein the first radiating beam comprises at least one pulse.