1,723,709 research outputs found
Dataset for Cavity Effect on Phase Noise of Fabry-Perot Modulator-based Optical Frequency Comb
We study previously unconsidered filtering effect of a Fabry-Perot (FP) cavity on the phase noise of optical frequency comb generated with an FP-based electro-optic modulator. We found that phase noise can be suppressed by up to 30 dB for offset frequencies >FSR/finesse.
Dataset supports:
Kim, Joonyoung, Richardson, David and Slavik, Radan (2016) Cavity Effect on Phase Noise of Fabry-Perot Modulator-based Optical Frequency Comb. IEEE Photonics Conference 2016</span
FWM-based Phase Preserving Amplitude Limiter employing Cancellation of SPM-Induced Distortions
The paper which uses this data is Bottrill, Kyle, Parmigiani, Francesca, Richardson, David and Petropoulos, Periklis (2016) FWM-based Amplitude Limiter Realizing Phase Preservation through Cancellation of SPM Distortions. OFC 2016 (doi:10.1364/OFC.2016.W4D.6).</span
Dataset for Optimisation of Amplitude Limiters for Phase Preservation Based on the Exact Solution to Degenerate Four-Wave Mixing
Adopting an exact solution to four-wave mixing (FWM), wherein harmonic evolution is described by the sum of two Bessel functions, we identify two causes of amplitude to phase noise conversion which impair FWM saturation based amplitude regenerators: self-phase modulation (SPM) and Bessel-order mixing (BOM). By increasing the pump to signal power ratio, we may arbitrarily reduce their impact, realising a phase preserving amplitude regenerator. We demonstrate the technique by applying it to the regeneration of a 10 GBaud QPSK signal, achieving a high level of amplitude squeezing with minimal amplitude to phase noise conversion.
Dataset for Bottrill, Kyle, Hesketh, Graham, Parmigiani, Francesca, Richardson, David and Petropoulos, Periklis (2016) Optimisation of Amplitude Limiters for Phase Preservation Based on the Exact Solution to Degenerate Four-Wave Mixing. Optics Express</span
Dataset for Temperature insensitive fiber interferometry
Data supporting the paper Zhu, Wenwu ; Numkam Fokoua, Eric ; Chen, Yong ; Bradley, Thomas ; Petrovich, Marco ; Poletti, Francesco ; Zhao, Mingshan ; Richardson, David ; Slavík, Radan. / Temperature insensitive fiber interferometry. In: Optics Letters. 2019</span
Pulse shaping in high power fiber laser systems
I review recent advances in the field of pulse shaping in fiber laser systems that allow for the management of nonlinear and dispersive effects, as well as tailoring of the output beams for specific end-applications
Data for Compact micro-optic based components for hollow core fibers
Data for the paper Jung, Yongmin ; Kim, Hyuntai ; Chen, Yong ; Bradley, Thomas ; Davidson, Ian ; Hayes, John ; Jasion, Gregory ; Sakr, Hesham ; Rikimi, Shuichiro ; Poletti, Francesco ; Richardson, David, 'Compact micro-optic based components for hollow core fibers', accepted for publication in Optics Express, November 2019</span
bellaoleksy/mohonkWinterLimno: mohonkWinterLimno
<p>Initial code release for peer review in <em>Geophysical Research Letters</em></p>
<p>Code written by @bellaoleksy and @richardson-david</p>
Fibre based short pulse amplification and manipulation circuitry
A number of fiber-based short-pulse transformation circuits that can be used to extend the capability and usefulness of conventional fiber-based short-pulse systems are described. Pulse transformations ranging from simple amplification and compression to spectral inversion and dark-soliton formation are covered and the potential applications of such circuitry discussed
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