论文标题
在中心对称有机超导体中,由Petahertz电子加速器驱动的对称破裂
Symmetry breaking driven by petahertz electron acceleration in a centrosymmetric organic superconductor
论文作者
论文摘要
在强烈的光场应用期间,充电加速度在固体中吸引了很多关注,因为高谐波产生和光电子发射的基本过程[1-7]。为了操纵电荷的ATTSOD动力学,载体 - 内玻璃相(CEP:光场载体振荡之间的相对相及其包膜功能之间的相对相)控制在绝缘子,纳米和石墨烯中[8-10]。在超导材料中,由于其准颗粒的强烈相干性质,预期集体控制电荷运动。 在这里,在分层有机超导体中,通过使用单个周期6 femtsecond近红外脉冲观察到第二次谐波产生(SHG),这与普遍的信念相反,即在中心对称系统中禁止谐波的谐波。 SHG在超导温度附近显示出CEP敏感的性质和增强。结果及其量子多体分析表明,极化电流是由电荷加速度引起的,这是通过超导波动扩大的。这将导致超导体和强相关系统的PETAHERTZ函数。
Charge acceleration during an intense light field application to solids attracts much attention as elementary processes in high-harmonic generation and photoelectron emission [1-7]. For manipulating such attosecond dynamics of charge, carrier-envelope-phase (CEP:relative phase between carrier oscillation of light field and its envelope function) control has been employed in insulators, nanometal and graphene [8-10]. In superconducting materials, collective control of charge motion is expected because of its strongly coherent nature of quasi-particles. Here, in a layered organic superconductor, second harmonic generation (SHG) is observed by using a single-cycle 6 femtosecond near infrared pulse, which is in contrast to the common belief that even harmonics are forbidden in the centrosymmetric system. The SHG shows a CEP sensitive nature and an enhancement near the superconducting temperature. The result and its quantum many-body analysis indicate that a polarized current is induced by non-dissipative acceleration of charge, which is amplified by superconducting fluctuations. This will lead to petahertz functions of superconductors and of strongly correlated systems.