Tanaka Yoshinori, Upham Jeremy, Nagashima Takushi, Sugiya Tomoaki, Asano Takashi, Noda Susumu
Department of Electronic Science and Engineering, Kyoto University, Kyoto 615-8510, Japan.
Nat Mater. 2007 Nov;6(11):862-5. doi: 10.1038/nmat1994. Epub 2007 Sep 2.
High-quality (Q) factor photonic-crystal nanocavities are currently the focus of much interest because they can strongly confine photons in a tiny space. Nanocavities with ultrahigh Q factors of up to 2,000,000 and modal volumes of a cubic wavelength have been realized. If the Q factor could be dynamically controlled within the lifetime of a photon, significant advances would be expected in areas of physics and engineering such as the slowing and/or stopping of light and quantum-information processing. For these applications, the transfer, storage and exchange of photons in nanocavity systems on such a timescale are highly desirable. Here, we present the first demonstration of dynamic control of the Q factor, by constructing a system composed of a nanocavity, a waveguide with nonlinear optical response and a photonic-crystal hetero-interface mirror. The Q factor of the nanocavity was successfully changed from approximately 3,000 to approximately 12,000 within picoseconds.
高品质(Q)因子光子晶体纳米腔目前备受关注,因为它们能够在微小空间内强烈限制光子。现已实现了具有高达2,000,000的超高Q因子和立方波长模态体积的纳米腔。如果能在光子寿命内动态控制Q因子,那么在诸如光的减慢和/或停止以及量子信息处理等物理和工程领域有望取得重大进展。对于这些应用而言,非常希望在这样的时间尺度上实现纳米腔系统中光子的转移、存储和交换。在此,我们通过构建一个由纳米腔、具有非线性光学响应的波导和光子晶体异质界面镜组成的系统,首次展示了对Q因子的动态控制。纳米腔的Q因子在皮秒内成功地从约3,000改变为约12,000。