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Frequency upshifting a CO2 laser pulse by collision with a relativistic ionization front

ORAL

Abstract

Research into tunable lasers is a well-developed field that has a broad range of applications including coherent IR spectroscopy, high-harmonic generation, and single cycle and attosecond pulse generation. We show simulation and experimental results of a novel method of frequency upshifting a 9.2 μm, two picosecond, CO2 laser pulse of intensity Io = 140 TW/cm2 by colliding it with a relativistic ionization front. A high-intensity Ti:Sapphire laser driver propagates through a hydrogen gas jet and is used to create a step-like ionization front that propagates close to the speed of light. As observed by the CO2 pulse, the driver induces a temporal change to the index of refraction, which causes frequency upshift and pulse duration compression of the CO2 laser pulse as it collides with the ionization front. Particle-in-Cell (PIC) simulations show that the wavelength of the upshifted pulse can be tuned in a broad range with high efficiency by changing the plasma density. For experimental demonstration of this effect, we are presently conducting an experiment at the Accelerator Test Facility (ATF) at Brookhaven National Laboratory where we expect to continuously upshift the frequency of the incident CO2 laser in the wavelength range from 9.2 μm to 4.6 μm. We have designed a single-shot spectrometer for the transmitted radiation that is capable of characterizing the energy, frequency, and bandwidth of the upshifted pulse. This experimental work is performed in collaboration with Stony Brook University and the ATF at Brookhaven National Laboratory. 

Presenters

  • Mitchell Sinclair

    UCLA, University of California, Los Angeles

Authors

  • Mitchell Sinclair

    UCLA, University of California, Los Angeles

  • Chaojie Zhang

    UCLA, University of California, Los Angeles

  • Yipeng Wu

    University of California, Los Angeles

  • Audrey Farrell

    University of California, Los Angeles

  • Zan Nie

    University of California, Los Angeles

  • Kenneth A Marsh

    University of California, Los Angeles

  • Navid Vafaei-Najafabadi

    Stony Brook University (SUNY), Stony Brook University

  • Irina Petrushina

    State Univ of NY - Stony Brook, Stony Brook University (SUNY)

  • Rotem Kupfer

    Brookhaven National Laboratory

  • Mikhail Polyanskiy

    Brookhaven National Laboratory

  • Igor Pogorelsky

    Brookhaven National Laboratory

  • Marcus Babzien

    Brookhaven National Laboratory

  • Mikhail Fedurin

    Brookhaven National Laboratory

  • Karl Kusche

    Brookhaven National Laboratory

  • Mark A Palmer

    Brookhaven National Laboratory

  • Chandrashekhar Joshi

    University of California, Los Angeles