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Terahertz emission from ultrafast ionizing air in symmetry-broken laser fields

Optics Express · 2007 · Vol. 15(8) · pp. 4577–4577
Ki‐Yong KimJ. H. GlowniaAntoinette J. TaylorG. Rodríguez

Abstract

A transient photocurrent model is developed to explain coherent terahertz emission from air irradiated by a symmetry-broken laser field composed of the fundamental and its second harmonic laser pulses. When the total laser field is asymmetric across individual optical cycles, a nonvanishing electron current surge can arise during optical field ionization of air, emitting a terahertz electromagnetic pulse. Terahertz power scalability is also investigated, and with optical pump energy of tens of millijoules per pulse, peak terahertz field strengths in excess of 150 kV/cm are routinely produced.

Terahertz technology and applicationsLaser-Matter Interactions and ApplicationsSpectroscopy and Laser ApplicationsTerahertz radiationLaserOpticsPhotomixingTerahertz spectroscopy and technologyElectric fieldUltrashort pulseTerahertz gapPhotocurrentPhysics
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References
Plasma perspective on strong field multiphoton ionization
Physical Review Letters · 1993 · 6,999 citations
Intense terahertz pulses by four-wave rectification in air
Optics Letters · 2000 · 1,036 citations
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