Frequency-modulation-mode-locked optical parametric oscillator.

A Esteban-Martin, G K Samanta, Kavita Devi, S Chaitanya Kumar, M Ebrahim-Zadeh
Author Information
  1. A Esteban-Martin: ICFO-Institut de Ciencies Fotoniques, Mediterranean Technology Park, 08860 Castelldefels, Barcelona, Spain. adolfo.esteban@icfo.es

Abstract

We demonstrate a novel technique for the generation of mode-locked pulses from a continuous-wave (cw) optical parametric oscillator (OPO). The technique is based on the deployment of a phase modulator in combination with an antiresonant ring interferometer internal to a cw OPO, simultaneously providing spectral broadening and phase-to-amplitude feedback modulation. The scheme is implemented in a doubly-resonant cw OPO based on MgO:sPPLT, configured in a standing-wave cavity and pumped at 532 nm. With the phase modulator activated and the cavity length synchronized, a stable train of 800 ps pulses is generated at a repetition rate of 160 MHz. Using single-pass second harmonic generation (SHG) of the OPO output, we observe a four times enhancement in SHG compared with cw operation, confirming the real achievement of energy concentration as a result of mode-locked operation.

Word Cloud

Created with Highcharts 10.0.0cwOPOtechniquegenerationmode-lockedpulsesopticalparametricoscillatorbasedphasemodulatorcavitySHGoperationdemonstratenovelcontinuous-wavedeploymentcombinationantiresonantringinterferometerinternalsimultaneouslyprovidingspectralbroadeningphase-to-amplitudefeedbackmodulationschemeimplementeddoubly-resonantMgO:sPPLTconfiguredstanding-wavepumped532nmactivatedlengthsynchronizedstabletrain800psgeneratedrepetitionrate160MHzUsingsingle-passsecondharmonicoutputobservefourtimesenhancementcomparedconfirmingrealachievementenergyconcentrationresultFrequency-modulation-mode-locked

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