Ding Xiaoyue, Heberle Dylan, Harrington Kerrianne, Flemens Noah, Chang Wei-Zung, Birks Tim A, Moses Jeffrey
School of Applied and Engineering Physics, Cornell University, Ithaca, New York 14853, USA.
Department of Physics, University of Bath, Claverton Down, Bath BA2 7AY, United Kingdom.
Phys Rev Lett. 2020 Apr 17;124(15):153902. doi: 10.1103/PhysRevLett.124.153902.
We observe clear evidence of adiabatic passage between photon populations via a four-wave mixing process, implemented through a dispersion sweep arranged by a core diameter taper of an optical fiber. Photonic rapid adiabatic passage through the cubic electric susceptibility thus opens precise control of frequency translation between broadband light fields to all common optical media. Areas of potential impact include optical fiber and on-chip waveguide platforms for quantum information, ultrafast spectroscopy and metrology, and extreme light-matter interaction science.
我们观察到通过四波混频过程在光子群之间存在绝热通道的明确证据,该过程通过光纤芯径渐变所安排的色散扫描来实现。通过三次方电极化率实现的光子快速绝热通道,从而开启了对宽带光场之间频率转换到所有常见光学介质的精确控制。潜在影响领域包括用于量子信息、超快光谱学和计量学以及极端光与物质相互作用科学的光纤和片上波导平台。