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1.
Opt Express ; 25(16): 18853-18862, 2017 Aug 07.
Article in English | MEDLINE | ID: mdl-29041077

ABSTRACT

Fully integrated monolithic, multi-channel InP-based coherent receiver PICs and transceiver modules with extended C-band tunability are described. These PICs operate at 33 and 44 Gbaud per channel under dual polarization (DP) 16-QAM modulation. Fourteen-channel monolithic InP receiver PICs show integration and data rate scaling capability to operate at 44 Gbaud under DP 16-QAM modulation for combined 4.9 Tb/s total capacity. Six channel simultaneous operation of a commercial transceiver module at 33 Gbaud is demonstrated for a variety of modulation formats including DP 16-QAM for >1.2Tbit/s aggregate data capacity.

2.
Opt Express ; 20(9): 9657-72, 2012 Apr 23.
Article in English | MEDLINE | ID: mdl-22535057

ABSTRACT

The capability of semiconductor optical amplifiers (SOA) to amplify advanced optical modulation format signals is investigated. The input power dynamic range is studied and especially the impact of the SOA alpha factor is addressed. Our results show that the advantage of a lower alpha-factor SOA decreases for higher-order modulation formats. Experiments at 20 GBd BPSK, QPSK and 16QAM with two SOAs with different alpha factors are performed. Simulations for various modulation formats support the experimental findings.


Subject(s)
Amplifiers, Electronic , Lasers, Semiconductor , Telecommunications/instrumentation , Equipment Design , Equipment Failure Analysis
3.
Opt Express ; 19(26): B154-8, 2011 Dec 12.
Article in English | MEDLINE | ID: mdl-22274012

ABSTRACT

In this work, a 10-wavelength, polarization-multiplexed, monolithically integrated InP coherent QPSK transmitter PIC is demonstrated to operate at 112 Gb/sec per wavelength and total chip superchannel bandwidth of 1.12 Tb/s. This demonstration suggests that increasing data capacity to multi-Tb/s per chip is possible and likely in the future.

4.
Opt Express ; 18(6): 6270-6, 2010 Mar 15.
Article in English | MEDLINE | ID: mdl-20389650

ABSTRACT

Experimentally we find a 10 dB input power dynamic range advantage for amplification of phase encoded signals with quantum dot SOA as compared to low-confinement bulk SOA. An analysis of amplitude and phase effects shows that this improvement can be attributed to the lower alpha-factor found in QD SOA.


Subject(s)
Amplifiers, Electronic , Quantum Dots , Signal Processing, Computer-Assisted/instrumentation , Telecommunications/instrumentation , Equipment Design , Equipment Failure Analysis
5.
Opt Express ; 16(1): 170-8, 2008 Jan 07.
Article in English | MEDLINE | ID: mdl-18521145

ABSTRACT

Gain and phase dynamics in InAs/GaAs quantum dot semiconductor optical amplifiers are investigated. It is shown that gain recovery is dominated by fast processes, whereas phase recovery is dominated by slow processes. Relative strengths and time constants of the underlying processes are measured. We find that operation at high bias currents optimizes the performance for nonlinear cross-gain signal processing if a low chirp is required.


Subject(s)
Amplifiers, Electronic , Computer-Aided Design , Optics and Photonics/instrumentation , Quantum Dots , Semiconductors , Equipment Design , Equipment Failure Analysis
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