499 research outputs found
Ultrabroadband single-cycle terahertz pulses with peak fields of 300 kV cm from a metallic spintronic emitter
To explore the capabilities of metallic spintronic thin-film stacks as a
source of intense and broadband terahertz electromagnetic fields, we excite a
W/CoFeB/Pt trilayer on a large-area glass substrate (diameter of 7.5 cm) by a
femtosecond laser pulse (energy 5.5 mJ, duration 40 fs, wavelength 800 nm).
After focusing, the emitted terahertz pulse is measured to have a duration of
230 fs, a peak field of 300 kV cm and an energy of 5 nJ. In particular,
the waveform exhibits a gapless spectrum extending from 1 to 10 THz at 10% of
amplitude maximum, thereby facilitating nonlinear control over matter in this
difficult-to-reach frequency range and on the sub-picosecond time scale.Comment: 7 pages, 4 figure
Pendulum limit, chaos and phase-locking in the dynamics of ac-driven semiconductor superlattices
We describe a limiting case when nonlinear dynamics of an ac-driven
semiconductor superlattice in the miniband transport regime is governed by a
periodically forced and damped pendulum. We find analytically the conditions
for a transition to chaos and consider an influence of temperature on the
effect. We also discuss fractional dc voltage states in a superlattice
originating from phase-locked states of the pendulum.Comment: 8 pages, no figures. Version2 is strongly revised: new physics, more
references. 3 appendixes of this Eprint are absent in the manuscript
submitted to journa
Efficient Auger scattering in Landau-quantized graphene
We present an analytical expression for the differential transmission of a delta-shaped light field in Landauquantized graphene. This enables a direct comparison of experimental spectra to theoretical calculations reflecting the carrier dynamics including all relevant scattering channels. In particular, the relation is used to provide evidence for strong Auger scattering in Landau-quantized graphene
Doubly dressed bosons - exciton-polaritons in a strong terahertz field
We demonstrate the existence of a novel quasiparticle: an exciton in a
semiconductor doubly dressed with two photons of different wavelengths: near
infrared cavity photon and terahertz (THz) photon, with the THz coupling
strength approaching the ultra-strong coupling regime. This quasiparticle is
composed of three different bosons, being a mixture of a matter-light
quasiparticle. Our observations are confirmed by a detailed theoretical
analysis, treating quantum mechanically all three bosonic fields. The doubly
dressed quasiparticles retain the bosonic nature of their constituents, but
their internal quantum structure strongly depends on the intensity of the
applied terahertz field.Comment: 12 pages, 9 figure
Localization properties of driven disordered one-dimensional systems
We generalize the definition of localization length to disordered systems
driven by a time-periodic potential using a Floquet-Green function formalism.
We study its dependence on the amplitude and frequency of the driving field in
a one-dimensional tight-binding model with different amounts of disorder in the
lattice. As compared to the autonomous system, the localization length for the
driven system can increase or decrease depending on the frequency of the
driving. We investigate the dependence of the localization length with the
particle's energy and prove that it is always periodic. Its maximum is not
necessarily at the band center as in the non-driven case. We study the
adiabatic limit by introducing a phenomenological inelastic scattering rate
which limits the delocalizing effect of low-frequency fields.Comment: Accepted for publication in European Physical Journal
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