paper

Pulse length of ultracold electron bunches extracted from a laser cooled gas

arXiv:1701.07686 · doi:10.1063/1.4978996

Abstract

We present measurements of the pulse length of ultracold electron bunches generated by near-threshold two-photon photoionization of a laser-cooled gas. The pulse length has been measured using a resonant GHz deflecting cavity in TM mode. We have measured the pulse length in three ionization regimes. The first is direct two-photon photoionization using only a nm femtosecond laser pulse, which results in short ( ps) but hot ( K) electron bunches. The second regime is just-above-threshold femtosecond photoionization employing the combination of a continuous-wave nm excitation laser and a tunable nm femtosecond ionization laser which results in both ultracold ( K) and ultrafast ( ps) electron bunches. These pulses typically contain electrons and have an rms normalized transverse beam emittance of nmrad. The measured pulse lengths are limited by the energy spread associated with the longitudinal size of the ionization volume, as expected. The third regime is just-below-threshold ionization which produces Rydberg states which slowly ionize on microsecond time scales.

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Pulse length of ultracold electron bunches extracted from a laser cooled gas · wovepaper