Pakhomov A V, Arkhipov R M, Arkhipov M V, Demircan A, Morgner U, Rosanov N N, Babushkin I
St. Petersburg State University, 7/9 Universitetskaya nab., St. Petersburg, 199034, Russia.
ITMO University, Kronverkskiy Prospekt 49, St. Petersburg, 197101, Russia.
Sci Rep. 2019 May 15;9(1):7444. doi: 10.1038/s41598-019-43852-w.
Up to now, full tunability of waveforms was possible only in electronics, up to radio-frequencies. Here we propose a new concept of producing few-cycle terahertz (THz) pulses with widely tunable waveforms. It is based on control of the phase delay between different parts of the THz wavefront using linear diffractive optical elements. Suitable subcycle THz wavefronts can be generated via coherent excitation of nonlinear low-frequency oscillators by few-cycle optical pulses. Using this approach it is possible to shape the electric field rather than the slow pulse envelope, obtaining, for instance, rectangular or triangular waveforms in the THz range. The method is upscalable to the optical range if the attosecond pump pulses are used.
到目前为止,波形的完全可调谐性仅在电子学领域实现,最高可达射频频率。在此,我们提出了一种产生具有广泛可调谐波形的少周期太赫兹(THz)脉冲的新概念。它基于使用线性衍射光学元件控制太赫兹波前不同部分之间的相位延迟。合适的亚周期太赫兹波前可以通过少周期光脉冲对非线性低频振荡器的相干激发来产生。使用这种方法,可以对电场而非缓慢的脉冲包络进行整形,例如在太赫兹范围内获得矩形或三角形波形。如果使用阿秒泵浦脉冲,该方法可扩展到光学范围。