English

Sub-cycle control of terahertz high-harmonic generation by dynamical Bloch oscillations

Mesoscale and Nanoscale Physics 2016-04-14 v1 Optics

Abstract

Ultrafast charge transport in strongly biased semiconductors is at the heart of highspeed electronics, electro-optics, and fundamental solid-state physics. Intense light pulses in the terahertz (THz) spectral range have opened fascinating vistas: Since THz photon energies are far below typical electronic interband resonances, a stable electromagnetic waveform may serve as a precisely adjustable bias. Novel quantum phenomena have been anticipated for THz amplitudes reaching atomic field strengths. We exploit controlled THz waveforms with peak fields of 72 MV/cm to drive coherent interband polarization combined with dynamical Bloch oscillations in semiconducting gallium selenide. These dynamics entail the emission of phase-stable high-harmonic transients, covering the entire THz-to-visible spectral domain between 0.1 and 675 THz. Quantum interference of different ionization paths of accelerated charge carriers is controlled via the waveform of the driving field and explained by a quantum theory of inter- and intraband dynamics. Our results pave the way towards all-coherent THz-rate electronics.

Keywords

Cite

@article{arxiv.1604.03732,
  title  = {Sub-cycle control of terahertz high-harmonic generation by dynamical Bloch oscillations},
  author = {O. Schubert and M. Hohenleutner and F. Langer and B. Urbanek and C. Lange and U. Huttner and D. Golde and T. Meier and M. Kira and S. W. Koch and R. Huber},
  journal= {arXiv preprint arXiv:1604.03732},
  year   = {2016}
}