EP1633066A2

Optical switch and optical waveform monitoring device

Abstract

The polarization direction of an optical signal is changed by a polarization controller (11) so as to be orthogonal to a main axis of a polarizer. A control pulse generator (12) generates control pulses from control beam with a wavelength which is different from the wavelength of the optical signal. The optical signal and the control pulse are input to a nonlinear optical fiber (14). In the nonlinear optical fiber (14), the optical signal, during a time period in which the optical signal and the control pulse coincide, is amplified with optical parametric amplification around a polarization direction of the control pulse. The optical signal, during the time period in which the optical signal and the control pulse coincide, passes through the polarizer (15).

EP1633066A2, drawing sheet 1
Sheet 1 of 48

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Projected expiry passed 30 August 2025, 1.1 years ago.

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50 claims: 18 independent, 32 dependent

  1. 1
    An optical switch, comprising:a first polarization controller (11) controlling a polarization direction of an optical signal;a nonlinear optical medium (14) to which the optical signal output from said first polarization controller being input;and a polarizer (15), placed at the output side of said nonlinear optical medium, having a main polarization axis orthogonal to a polarization direction of the optical signal output from said nonlinear optical medium, wherein the optical signal is amplified with parametric amplification by a control pulse around a polarization direction of the control pulse in said nonlinear optical medium.
  2. 22
    An optical switch, comprising:a nonlinear optical medium (14), to which both an optical signal with a designated polarization direction and a control pulse with a different wavelength and different polarization direction from the optical signal being input, changing a polarization of the optical signal by cross phase modulation during a period where the optical signal coincides with the control pulse in the time domain, and amplifying the optical signal in the time domain so that the optical signal has a polarization component around the polarization direction of the control pulse by optical parametric amplification;and a polarizer (15), placed on the output side of said nonlinear optical medium, having a polarization main axis orthogonal to the polarization direction of the optical signal.
  3. 23
    An optical switch having a nonlinear optical medium, to which an optical signal with a polarization direction controlled by a polarization controller (11) is input, wherein the polarization of the optical signal in the absence of a control pulse having a polarization component and wavelength, which are different from those of the optical signal, is aligned so that the optical signal polarization is orthogonal to a main polarization axis of a polarizer (15) placed on the output side of the nonlinear optical medium (14) by use of a polarization controller;and the optical signal is amplified by optical parametric amplification to be having the polarization component around polarization direction of the control pulse by the control pulse in the nonlinear optical medium.
  4. 24
    An optical waveform monitoring device, comprising:a polarization controller (11) controlling a polarization direction of an optical signal;a nonlinear optical medium (14) to which the optical signal output from said polarization controller being input;a polarizer (15), placed at the output side of said nonlinear optical medium, having a main polarization axis orthogonal to a polarization direction of the optical signal output from said nonlinear optical medium;an optical receiver (52) converting the output of said polarizer into electrical signal;and monitoring means (53) for monitoring a waveform of the optical signal by tracing the electrical signal in time domain, wherein the optical signal is amplified with parametric amplification by the control pulse around a polarization direction of the control pulse in said nonlinear optical medium, a frequency of the control pulse is different from a bit rate of the optical signal.
  5. 25
    An optical waveform monitoring device, comprising:a polarization controller (11) controlling a polarization direction of an optical signal;a nonlinear optical medium (14) to which the optical signal output from said polarization controller being input;a polarizer (15) placed at the output side of said nonlinear optical medium;an optical receiver (52) converting the output of said polarizer into electrical signal;and monitoring means (53) for monitoring a waveform of the optical signal by tracing the electrical signal in time domain, wherein the optical signal is amplified with parametric amplification by the control pulse around a polarization direction of the control pulse in said nonlinear optical medium, a frequency of the control pulse is different from a bit rate of the optical signal, a polarization direction of the optical signal is aligned orthogonal to the main polarization axis of said polarizer in the absence of the control pulse by said polarization controller.
  6. 28
    A method for optical switching, comprising:controlling a polarization direction of an optical signal;generating a control pulse with a wavelength different from a wavelength of the optical signal;aligning a polarization direction of the control pulse to a designated angle relative to the polarization direction of the optical signal;inputting the optical signal and control pulse into a nonlinear optical medium;extracting a part of the optical signal, which is coincident in time with the control pulse, by directing the optical signal pass through the polarizer having a main polarization axis orthogonal to a polarization direction of the optical signal during a period in which the control pulse is absent, the polarization direction of the optical signal being changed by cross phase modulation and the optical signal being amplified by optical parametric amplification around a polarization direction of the control pulse during a period in which the optical signal is coincident with the control pulse in the nonlinear optical medium.
  7. 29
    A method for optical switching, comprising:controlling a polarization direction of a first optical signal;generating a control pulse with a wavelength different from a wavelength of the first optical signal;aligning a polarization direction of the control pulse to a designated angle relative to the polarization direction of the first optical signal;inputting the first optical signal and control pulse into a nonlinear optical medium;time-division multiplexing a second optical signal with the first optical signal, the first and second optical signals being not coincident in time with each other, by directing the first optical signal, amplified by optical parametric amplification to be the polarization component with a polarization direction around that of the control pulse and has a polarization direction changed by cross phase modulation during a period in which the first optical signal coincides with the control pulse, pass through a polarizer having a main polarization axis orthogonal to the polarization direction of the first optical signal in the absence of the control pulse.
  8. 31
    A method for optical switching, comprising:controlling a polarization direction of an optical signal after waveform shaping for flattening a peak of the optical signal;generating a control pulse having a wavelength different from a wavelength of the optical signal;aligning a polarization of the control pulse to a designated angle relative to a polarization direction of the optical signal;inputting the optical signal and the control pulse into a nonlinear optical medium;and extracting a part of the optical signal, which is coincident in time with the control pulse, by directing the optical signal pass through a polarizer having a main polarization axis orthogonal to a polarization direction of the optical signal during a period in which the control pulse is absent, the polarization direction of the optical signal being changed by cross phase modulation and the optical signal being amplified by optical parametric amplification around a polarization direction of the control pulse during a period in which the optical signal is coincident with the control pulse in the nonlinear optical medium.
  9. 32
    A method for optical switching, comprising:generating a control pulse with a time width shorter than that of a pulse of an optical signal and with a wavelength different from a wavelength of the optical signal;aligning a polarization of the control pulse to a designated angle relative to a polarization direction of the optical signal;inputting the optical signal and the control pulse into a nonlinear optical medium;and extracting a part of the optical signal, which is coincident in time with the control pulse, by directing the optical signal pass through a polarizer having a main polarization axis orthogonal to a polarization direction of the optical signal during a period in which the control pulse is absent, the polarization direction of the optical signal being changed by cross phase modulation and the optical signal being amplified by optical parametric amplification around a polarization direction of the control pulse during a period in which the optical signal is coincident with the control pulse in the nonlinear optical medium.
  10. 34
    An optical switch, comprising:a nonlinear optical medium (93) to which an optical signal and a control pulse being input;and optical means for outputting the optical signal during a period in which the optical signal coincides with the control pulse in said nonlinear optical medium, and for blocking the optical signal during a period in which the control pulse is absent in said nonlinear optical medium, wherein the optical signal is amplified with parametric amplification by the control pulse around a polarization direction of the control pulse in said nonlinear optical medium.
  11. 35
    An optical switch, comprising:a nonlinear optical medium (93) to which an optical signal and a control pulse being input;and optical means for outputting the optical signal during a period in which the optical signal coincides with the control pulse in said nonlinear optical medium, and for blocking the optical signal during a period in which the control pulse is absent in said nonlinear optical medium, wherein the optical signal is amplified with nonlinear amplification by the control pulse around a polarization direction of the control pulse in said nonlinear optical medium.
  12. 36
    An optical switch, comprising:a polarization controller (11) controlling a polarization direction of an optical signal;a nonlinear optical medium (14) to which the optical signal output from said polarization controller being input;and a polarizer (15), placed at the output side of said nonlinear optical medium, having a main polarization axis orthogonal to a polarization direction of the optical signal output from said nonlinear optical medium, wherein the optical signal is amplified with nonlinear amplification by a control pulse around a polarization direction of the control pulse in said nonlinear optical medium.
  13. 38
    An optical switch, comprising:a polarization controller (11) for controlling a polarization direction of a phase-modulated optical signal or a frequency-modulated optical signal;a nonlinear optical medium (14) to which the optical signal output from said polarization controller being input;and a polarizer (15), placed at the output side of said nonlinear optical medium, having a main polarization axis orthogonal to a polarization direction of the optical signal output from said nonlinear optical medium, wherein the optical signal is amplified with parametric amplification by a control pulse around a polarization direction of the control pulse in said nonlinear optical medium.
  14. 42
    A optical switch, comprising:a nonlinear optical medium (14), to which both a phase-modulated optical signal or a frequency-modulated optical signal with a designated polarization direction and a control pulse with a different wavelength and different polarization direction from the optical signal being input, changing a polarization,of the optical signal by cross phase modulation during a period where the optical signal coincides with the control pulse in the time domain, and amplifying the optical signal in the time domain so that the optical signal has a polarization component around the polarization direction of the control pulse by optical parametric amplification;and a polarizer (15), placed on the output side of said nonlinear optical medium, having a polarization main axis orthogonal to the polarization direction of the optical signal.
  15. 43
    An optical waveform monitoring device, comprising:a polarization controller (11) controlling a polarization direction of a phase-modulated optical signal or a frequency-modulated optical signal;a nonlinear optical medium (14) to which the optical signal output from said polarization controller being input;a polarizer (15), placed at the output side of said nonlinear optical medium, having a main polarization axis orthogonal to a polarization direction of the optical signal output from said nonlinear optical medium;an optical receiver (52) converting the output of said polarizer into electrical signal;and monitoring means (53) for monitoring a waveform of the optical signal by tracing the electrical signal in time domain, wherein the optical signal is amplified with parametric amplification by the control pulse around a polarization direction of the control pulse in said nonlinear optical medium, a frequency of the control pulse is different from a bit rate of the optical signal.
  16. 44
    A method for optical switching, comprising:controlling a polarization direction of a phase-modulated optical signal or a frequency-modulated optical signal;generating a control pulse with a wavelength different from a wavelength of the optical signal;aligning a polarization direction of the control pulse to a designated angle relative to the polarization direction of the optical signal;inputting the optical signal and control pulse into a nonlinear optical medium;extracting a part of the optical signal, which is coincident in time with the control pulse, by directing the optical signal pass through the polarizer having a main polarization axis orthogonal to a polarization direction of the optical signal during a period in which the control pulse is absent, the polarization direction of the optical signal being changed by cross phase modulation and the optical signal being amplified by optical parametric amplification around a polarization direction of the control pulse during a period in which the optical signal is coincident with the control pulse in the nonlinear optical medium.
  17. 45
    An optical switching method comprising:aligning a polarization direction of a control pulse with wavelength different from that of an optical signal at a predetermined angle from the polarization direction of the optical signal, the optical signal being acquired by time-division-multiplexing a phase-modulated optical signals or a frequency-modulated optical signals;inputting the optical signal and the control pulse to a nonlinear optical medium;and extracting a part of the optical signal, which is coincident in time with the control pulse, by directing the optical signal pass through the polarizer having a main polarization axis orthogonal to a polarization direction of the optical signal during a period in which the control pulse is absent, the polarization direction of the optical signal being changed by cross phase modulation and the optical signal being amplified by optical parametric amplification around a polarization direction of the control pulse during a period in which the optical signal is coincident with the control pulse in the nonlinear optical medium.
  18. 50
    An optical switch comprising:a polarization splitter (301) for splitting an optical signal into first and second polarized signals which are orthogonal to each other;first and second nonlinear optical media to which the first and the second polarized signals are input, respectively;first and second polarizers, each of which is placed at the output side of the first and the second nonlinear optical fibers, having a polarization main axis orthogonal to the polarization direction of the first and the second polarized signals, respectively;and a coupling device (304) for coupling signals output from the first and the second polarizers, wherein the first polarized signal is amplified with optical parametric amplification around a polarization direction of a first control pulse in the first nonlinear optical medium, and the second polarized signal is amplified with optical parametric amplification around a polarization direction of the second control pulse in the second nonlinear optical medium.