Effects of initial three-dimensional electron energy distribution on terahertz Bloch oscillations in a biased semiconductor superlattice

Author:

Unuma TakeyaORCID,Ueda Kosuke,Okamoto Ryuichi

Abstract

Abstract We investigate how the initial three-dimensional energy distribution of electrons created by femtosecond pump pulses in a biased semiconductor superlattice affects terahertz Bloch oscillations, which imitate a step response to a bias electric field. The emitted terahertz waveforms are well reproduced from a damped oscillation current with capacitive nature, exhibiting shorter relaxation times and worse temporal resolutions for central pump photon energies that are outside the range of ordinary electron excitation into the conduction first miniband. This indicates that in-plane excess energy changes the relaxation time via scattering processes, while partial use of the pump pulse spectrum reduces the temporal resolution.

Funder

Japan Society for the Promotion of Science KAKENHI

Ministry of Education, Culture, Sports, Science and Technology

Initiative to Establish Next-generation Novel Integrated Circuits Centers

Japan Science and Technology Agency CREST

Publisher

IOP Publishing

Subject

General Physics and Astronomy,General Engineering

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