超导电性
超短脉冲
涡流
皮秒
光谱学
光学
材料科学
旋涡
旋涡状态
物理
时间分辨率
凝聚态物理
梁(结构)
激光器
量子力学
热力学
作者
Yasunori Toda,Satoshi Tsuchiya,Keisaku Yamane,Ryuji Morita,Migaku Oda,T. Kurosawa,T. Mertelj,D. Mihailović
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2023-05-01
卷期号:31 (11): 17537-17537
被引量:3
摘要
We report an experimental approach to produce spatially localized photoinduced superconducting state in a cuprate superconductor using optical vortices with ultrafast pulses. The measurements were carried out using coaxially aligned three-pulse time-resolved spectroscopy, in which an intense vortex pulse was used for coherent quenching of superconductivity and the resulting spatially modulated metastable states were analyzed by the pump-probe spectroscopy. The transient response after quenching shows a spatially localized superconducting state that remains unquenched at the dark core of the vortex beam for a few picoseconds. Because the quenching is instantaneously driven by photoexcited quasiparticles, the vortex beam profile can be transferred directly to the electron system. By using the optical vortex-induced superconductor, we demonstrate spatially resolved imaging of the superconducting response and show that the spatial resolution can be improved using the same principle as that of super-resolution microscopy for fluorescent molecules. The demonstration of spatially controlled photoinduced superconductivity is significant for establishing a new method for exploring novel photoinduced phenomena and applications in ultrafast optical devices.
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