A pulsed, tunable, narrow band radiation source with frequency in the THz region can be obtained collecting the coherent transition radiation produced by a train of ultra-short electron bunches having picosecond scale inter-distance. In this paper, we review the techniques feasible at the SPARC_LAB test facility to produce and manipulate the requested train of electron bunches and we examine the dynamics of their acceleration and compression. In addition, we show how the performances of the train compression and the radiation intensity and bandwidth can be significantly improved through the insertion of a fourth order harmonic cavity, working in the X-band and acting as a longitudinal phase space linearizer
Marchetti, B., Bacci, A., Chiadroni, E., Cianchi, A., Ferrario, M., Mostacci, A., et al. (2015). Novel schemes for the optimization of the SPARC narrow band THz source. REVIEW OF SCIENTIFIC INSTRUMENTS, 86(7), 073301 [10.1063/1.4922882].
Novel schemes for the optimization of the SPARC narrow band THz source
CIANCHI, ALESSANDRO;
2015-07-01
Abstract
A pulsed, tunable, narrow band radiation source with frequency in the THz region can be obtained collecting the coherent transition radiation produced by a train of ultra-short electron bunches having picosecond scale inter-distance. In this paper, we review the techniques feasible at the SPARC_LAB test facility to produce and manipulate the requested train of electron bunches and we examine the dynamics of their acceleration and compression. In addition, we show how the performances of the train compression and the radiation intensity and bandwidth can be significantly improved through the insertion of a fourth order harmonic cavity, working in the X-band and acting as a longitudinal phase space linearizerFile | Dimensione | Formato | |
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