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Single-Crystal Terahertz Pulses with >0.2 V/A Field Amplitudes via Coherent Transition Radiation.

机译:通过相干跃迁辐射具有> 0.2 V / a场幅的单晶太赫兹脉冲。

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We demonstrate terahertz pulses with field amplitudes exceeding 0.2 V/(angstrom) generated by coherent transition radiation. Femtosecond, relativistic electron bunches generated at the Linac Coherent Light Source are passed through a beryllium foil, and the emitted radiation is characterized as a function of the bunch duration and charge. Broadband pulses centered at a frequency of 10 THz with energies of 140 (mu)J are measured. These far-below-bandgap pulses drive a nonlinear optical response in a silicon photodiode, with which we perform nonlinear autocorrelations that yield information regarding the terahertz temporal profile. Simulations of the spatiotemporal profile agree well with experimental results.

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