CA2463545A1

An optical signal receiver photonic integrated circuit (rxpic), an associated optical signal transmitter photonic integrated circuit (txpic) and an optical transport network utilizing these circuits

Abstract

A photonic integrated circuits (PICs), also referred to as opto-electronic integrated circuits (OEICs), and more particularly to a PIC in the form of a n optical receiver PIC or RxPIC for use in an optical transport networks. Also , an optical transmitter PIC (TxPIC) is also disclosed in conjunction with an RxPIC in an optical transport network. The chip is cast from an InP wafer an d is made from Group III-V elemental materials in the InGaAsP/InP regime with fabrication accomplished through selective metalorganic vapor phase epitaxy (MOVPE) or also known as metalorganic chemical vapor deposition (MOCVD). Integrated on the chip, starting at the input end which is coupled to receiv e multiplexed optical data signals from an optical transport network is an optical amplifier, an optical demultiplexer, and a plurality of on-chip photodiodes (PDs) each to receive a demultiplexed data signal from the AWG DEMUX for optical-to-electrical signal conversion. The optical input amplifi er may be an on~chip gain clamped semiconductor optical amplifier (GC-SOA) or a n off-chip fiber amplifier. The optical input amplifier may be optional if the channel signal demultiplexer provides for minimal insertion loss which is optimum with a properly designed arrayed waveguide grating (AWG) demultiplex er.

CA2463545A1, drawing sheet 1
Sheet 1 of 41

Term

Term ended

Projected expiry passed 8 October 2022, 4 years ago.

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107 claims: 13 independent, 94 dependent

  1. 1
    CA 02463545 2004-04-08 WO 03/102659 PCT/US02/32110 WHAT IS CLAIMED IS:1. An optical receiver photonic integrated circuit (RxPIC) comprising: a single monolithic InP chip having an input to receive multiplexed channel signals with wavelengths within an optical signal wavelength grid from an optical telecommunication source;a gain clamped semiconductor optical amplifier (GC-SOA) integrated in the chip at the input to amplify the multiplexed channel signals for equalized spectral amplification across the channel signal grid;an optical demultiplexer integrated in the chip and optically coupled to the GC-SOA to receive the amplified multiplexed channel signals and provide the individual channel signals on respective output waveguides from the optical demultiplexer;and a plurality of photodetectors integrated in the chip and each optically coupled to one of the output waveguides to receive a demultiplexed channel signal and convert it to an electrical signal.
  2. 18
    19. The RxPIC of claim lwherein the GC-SOA is a SOA with an injected gain clamp signal coupled into the chip input.
  3. 49
    50. An optical receiver comprising:a single monolithic InP chip having an input to receive multiplexed channel signals from an optical telecommunication source with channel wavelengths within a channel signal grid;-50CA 02463545 2004-04-08 WO 03/102659 PCT/US02/32110 a fiber amplifier coupled to the input of the chip to receive and amplify the multiplexed channel signals for equalized spectral amplification across the channel signal grid;an optical demultiplexer integrated in the chip and optically coupled to receive the amplified multiplexed channel signals and provide the individual channel signals on respective output waveguides from the optical demultiplexer;and a plurality of photodetectors integrated in the chip and each optically coupled to one of the output waveguides to receive a demultiplexed channel signal and convert it to an electrical signal.
  4. 52
    53. An optical receiver comprising:a single monolithic InP chip having an input to receive multiplexed channel signals from an optical telecommunication source with channel wavelengths within a channel signal grid;an optical amplifier integrated at the input of the chip to receive and amplify the multiplexed channel signals and coupled to an integrated on-chip optical waveguide;an arrayed waveguide grating (AWG) integrated in the chip and optically coupled via the optical waveguide to receive the amplified multiplexed channel signals and provide individual channel signals on respective output waveguides from the AWG;a plurality of photodetectors integrated in the chip and each optically coupled to one of the output waveguides to respectively receive a demultiplexed channel signal and convert the signal to an electrical signal;the improvement comprising a plurality of semiconductor optical amplifiers integrated at the input of the chip and optically coupled to a single input of the AWG, one of the amplifiers with the best performance selected to receive the multiplexed channel signals for amplification.
  5. 56
    57. A monolithic semiconductor optical receiver chip comprising:a single monolithic InP chip having an input to receive multiplexed channel signals having wavelengths within a channel signal wavelength grid from an optical telecommunication source;an optical amplifier at the input of the chip to receive the multiplexed channel signals, the amplifier optically coupled to an on-chip integrated optical waveguide;an arrayed waveguide grating (AWG) integrated in the chip and optically coupled via the optical waveguide to receive the amplified multiplexed channel signals and provide individual channel signals on respective output waveguides from the AWG;a plurality of photodetectors integrated in the chip, one optically coupled to each of the AWG output waveguides to respectively receive a demultiplexed channel signal and convert the signal to an electrical signal.
  6. 61
    62. A monolithic semiconductor optical receiver chip comprising:a single monolithic InP chip having an input to receive multiplexed channel signals having wavelengths within a channel signal wavelength grid from an optical telecommunication source;an arrayed waveguide grating (AWG) integrated in the chip and optically coupled via the optical waveguide to receive the multiplexed channel signals and provide individual channel signals on respective output waveguides from the AWG;a plurality of photodetectors integrated in the chip, one optically coupled to each of the AWG output waveguides to respectively receive a demultiplexed channel signal and convert the signal to an electrical signal;-52CA 02463545 2004-04-08 WO 03/102659 PCT/US02/32110 the improvement comprising the placement geometry of the AWG output waveguides in fanout shape on the chip where the waveguide coupled photodetectors are placed along at least two sides of the chip reducing the required layout area of the chip.
  7. 72
    73. An optical transport network comprising:a monolithic transmitter photonic integrated circuit (TxPIC) InP-based chip comprising: an array of optical waveguides formed in the chip that are coupled as inputs to an arrayed waveguide grating (AWG);each of the optical waveguides including, in integrated form, a semiconductor laser source and an electro-optic modulator;-53CA 02463545 2004-04-08 WO 03/102659 PCT/US02/32110 each of the laser sources having a different operational wavelength within a standardized wavelength grid;the AWG having a wavelength grid with a passband substantially matching the standardized wavelength grid of the laser sources and functioning as a multiplexer of modulated channel signals received at its as input and providing multiplexed channel signals at its output for offchip optical coupling to an optical link;a monolithic receiver photonic integrated circuit (RxPIC) InP-based chip comprising: an input to receive the multiplexed channel signals from the optical link and provide them to an input of an arrayed waveguide grating (AWG);the AWG having a wavelength grid with a passband substantially matching the standardized wavelength grid of the laser sources and functioning as a demultiplexer of the channel signals received at its output;the AWG having a plurality of optical waveguides at its output to respectively provide a demultiplexed channel signal at each output;each of the AWG output waveguides having an integrated photodetector for detecting the optical signal and providing a corresponding electrical signal.
  8. 78
    79. A monolithic receiver photonic integrated circuit (RxPIC) InP-based chip comprising:a semiconductor laser amplifier integrated at the input of the chip to receive multiplexed channel signals;an arrayed waveguide grating (AWG) optically coupled to receive the amplified multiplexed channel signals and provided equalized gain across the wavelength grid of the signals;the AWG having a wavelength grid with a passband substantially matching a standardized wavelength grid and demultiplexing the channel signals;the AWG having a plurality of optical waveguides at its output to respectively receive a demultiplexed channel signal: each of the AWG output waveguides having an integrated photodetector for detecting the optical signal and providing a corresponding electrical signal.
  9. 83
    84. A monolithic receiver photonic integrated circuit (RxPIC) InP-based chip comprising:an AWG optically coupled to receive multiplexed channel signals from an optical link via an input of the chip and having a wavelength grid with a passband substantially matching a standardized wavelength grid and comprising a demultiplexer of channel signals, a plurality of optical waveguides at its output to each respectively receive a demultiplexed channel signal;a first photodetector integrated in each of the AWG output waveguides for detection of a demultiplexed optical channel signal and providing a corresponding electrical channel signal;-55CA 02463545 2004-04-08 WΟ 03/102659 PCT/US02/32110 at least one second photodetector integrated on the RxPIC chip and not integrated in any AWG output waveguide for detection of optical noise in the RxPIC chip and providing a corresponding electrical noise signal;and a transimpedance circuit for amplifying each of the electrical channel signals, each of the transimpedance amplifiers having a differential input where one input receives a respective electrical channel signal and the other input receives the electrical noise signal so that the onchip optical noise is cancelled from the electrical channel signal.
  10. 91
    92. An optical-to-electrical-to-optical converter comprising:a monolithic receiver photonic integrated circuit (RxPIC) InP-based chip comprising a an optical waveguide formed in the chip from a chip input to receive the multiplexed channel -56CA 02463545 2004-04-08 WO 03/102659 PCT/US02/32110 signals from an optical link and provide them to an input of an arrayed waveguide grating (AWG);the AWG having a wavelength grid with a passband substantially matching the standardized wavelength grid and optically coupled to receive tire multiplexed channel signals from the optical link and demultiplex the optical channel signals;the AWG having a plurality of optical waveguides at its output to respectively receive a demultiplexed channel signal, each of the AWG output waveguides having an integrated photodetector for detecting the optical signal and providing a corresponding electrical channel signal;an electronic regenerator for receiving each of the corresponding electrical channel signals, amplifying and regenerating the corresponding electrical channel signals to an original signal waveform;a monolithic transmitter photonic integrated circuit (TxPIC) InP-based chip having an array of optical waveguides formed in the chip that are coupled as inputs to an arrayed waveguide grating (AWG);each of the optical waveguides including an integrated semiconductor laser source providing an optical channel wavelength within a standardized wavelength grid and an electro-optic modulator to modulate the corresponding optical channel wavelength;each regenerated electrical channel signal provided to a respective electro-optic modulator to modulate the optical channel wavelength according to the regenerated electrical channel signal to produce a corresponding optical channel signal;the TxPIC AWG having a wavelength grid with a passband substantially matching the standardized wavelength grid of the laser sources and to multiplex modulated channel signals provided as input from each of the waveguide inputs and providing an output of the multiplexed channel signals for off-chip optical coupling to another optical link.
  11. 93
    94. A method of optimizing optical channel signal demultiplexing in a monolithic receiver photonic integrated circuit (RxPIC) chip having integrated channel signal amplification and demultiplexing, comprising the steps of:integrating a plurality of semiconductor optical amplifiers at the input of the chip;providing an integrated arrayed waveguide grating (AWG) in the chip as the channel signal demultiplexer;-57CA 02463545 2004-04-08 WO 03/102659 PCT/US02/32110 coupling optical outputs from the semiconductor laser amplifiers to the central region of first order Brillouin zone of an input to the AWG forming an input vernier;and selecting the semiconductor laser amplifier and corresponding input having the optimum combined performance for matching a multiplexed channel signal wavelength grid to a wavelength grid of the AWG.
  12. 95
    96. A method on-chip testing of a photonic integrated circuit (PIC) die in a semiconductor wafer where the PIC includes a plurality of in-chip formed optical components including at least one photodetector, comprising the steps of:providing an in-wafer region between adjacent PIC die;forming a groove in the in-wafer region providing an optical access to a signal input of the PIC die;introducing an interrogation beam into the PIC die signal input via the groove;checking an electrical response of the at least one photodetector to determine if the optical components have proper optical characteristics.
  13. 99
    100. A FEC enhanced system for an optical transport network comprising:an optical transmitter including a TxPIC chip having a photonic integrated circuit comprising an array of modulated sources representing channel signals on a wavelength grid and providing respective modulating data bit streams as channel signal outputs coupled to a multiplexer to provide a multiplexed output signal of the channel signal outputs;at least one FEC encoder coupled to the modulated sources to encode error-correcting code containing redundant information of the data bit stream for each channel signal;an optical receiver including a RxPIC chip having a photonic integrated circuit comprising a demultiplexer and an array of photodetectors couple to outputs of the demultiplexer;at least one FEC decoder coupled to the photodetectors to provide decoded data relating to the bit error rate (BER);-58CA 02463545 2004-04-08 WO 03/102659 PCT/US02/32110 and a controller in the optical receiver to provide real-time information to the optical transmitter relating to optical characteristics of the modulated sources based upon the BER data.