论文标题
在k $ _3 $ c $ _ {60} $中的亚稳态照片引起的超导性的证据
Evidence for metastable photo-induced superconductivity in K$_3$C$_{60}$
论文作者
论文摘要
远红外光学脉冲已显示可诱导复杂材料中的非平衡非常规阶,包括量子降压剂中光诱导的铁电性,抗铁磁铁中的磁极化以及在平原和有机托管正常状态和有机托管的正常状态中的瞬态超导管相关性。在非平衡超导性的情况下,飞秒驱动器通常导致电子特性在激发后立即消失,证明缺乏固有刚性的状态。在这里,我们利用一种新的光学设备来驱动金属k $ _3 $ c $ _ {60} $,带有可调持续时间的中红外脉冲,在一个picsecond和一个纳米秒之间。在短时间内,在持续的光学驾驶中显示出相同的超导状光学特性,在短时间内的启发窗口中,它们在持续的光学驾驶中变得可稳定,寿命超过十纳秒。在这些时间尺度上,直接的电探测可能会产生消失的小电阻。对于金属而言,这种巨大的阳性光电传导性是高度不寻常的,当与瞬态光电电导率一起使用时,它相当暗示了亚稳态的光诱导的超导性。
Far and mid infrared optical pulses have been shown to induce non-equilibrium unconventional orders in complex materials, including photo-induced ferroelectricity in quantum paraelectrics, magnetic polarization in antiferromagnets and transient superconducting correlations in the normal state of cuprates and organic conductors. In the case of non-equilibrium superconductivity, femtosecond drives have generally resulted in electronic properties that disappear immediately after excitation, evidencing a state that lacks intrinsic rigidity. Here, we make use of a new optical device to drive metallic K$_3$C$_{60}$ with mid-infrared pulses of tunable duration, ranging between one picosecond and one nanosecond. The same superconducting-like optical properties observed over short time windows for femtosecond excitation are shown here to become metastable under sustained optical driving, with lifetimes in excess of ten nanoseconds. Direct electrical probing becomes possible at these timescales, yielding a vanishingly small resistance. Such a colossal positive photo-conductivity is highly unusual for a metal and, when taken together with the transient optical conductivities, it is rather suggestive of metastable light-induced superconductivity.