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Field propagation-induced directionality of carrier-envelope phase-controlled photoemission from nanospheres

机译:场传播引起的载流子包络相控纳米粒子光发射的方向性

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摘要

Near-fields of non-resonantly laser-excited nanostructures enable strong localization of ultrashort light fields and have opened novel routes to fundamentally modify and control electronic strong-field processes. Harnessing spatiotemporally tunable near-fields for the steering of sub-cycle electron dynamics may enable ultrafast optoelectronic devices and unprecedented control in the generation of attosecond electron and photon pulses. Here we utilize unsupported sub-wavelength dielectric nanospheres to generate near-fields with adjustable structure and study the resulting strong-field dynamics via photoelectron imaging. We demonstrate field propagation-induced tunability of the emission direction of fast recollision electrons up to a regime, where nonlinear charge interaction effects become dominant in the acceleration process. Our analysis supports that the timing of the recollision process remains controllable with attosecond resolution by the carrier-envelope phase, indicating the possibility to expand near-field-mediated control far into the realm of high-field phenomena.
机译:非共振激光激发的纳米结构的近场能够实现超短光场的强定位,并开辟了从根本上修改和控制电子强场过程的新颖途径。利用时空可调谐的近场来控制亚周期电子动力学,可以实现超快的光电器件,并能在亚秒级电子和光子脉冲的产生中实现空前的控制。在这里,我们利用不受支持的亚波长介电纳米球产生具有可调结构的近场,并通过光电子成像研究由此产生的强场动力学。我们证明了场传播引起的快速碰撞电子的发射方向的可调谐性,直到一个机制,其中非线性电荷相互作用效应在加速过程中占主导地位。我们的分析支持,重新碰撞过程的时机仍然可以通过载波-信封相位以亚秒分辨率控制,这表明有可能将近场介导的控制扩展到高场现象领域。

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