Kim Jimyung, Shinya Akihiko, Nozaki Kengo, Taniyama Hideaki, Chen Chin-Hui, Sato Tomonari, Matsuo Shinji, Notomi Masaya
NTT Basic Research Laboratories, NTT Corporation, 3-1 Morinosato-Wakamiya, Atsugi, Kanagawa 243-0198,Japan.
Opt Express. 2012 May 21;20(11):11643-51. doi: 10.1364/OE.20.011643.
We investigate the spectral linewidth of a monolithic photonic crystal nanocavity laser. The nanocavity laser is based on a buried heterostructure cavity in which an ultra-small InGaAsP active region is embedded in an InP photonic crystal. Although it was difficult to achieve narrow linewidth operation in previously reported photonic crystal nanocavity lasers, we have successfully demonstrated a linewidth of 143.5 MHz, which is far narrower than the cold cavity linewidth and the narrowest value yet reported for nanolasers and photonic crystal lasers. The narrow linewidth is accompanied by a low power consumption and an ultrasmall footprint, thus making this particular laser especially suitable for use as an integrated multi-purpose sensor.
我们研究了单片光子晶体纳米腔激光器的谱线宽度。该纳米腔激光器基于掩埋异质结构腔,其中一个超小的InGaAsP有源区嵌入在InP光子晶体中。尽管在先前报道的光子晶体纳米腔激光器中很难实现窄线宽运转,但我们已成功证明其线宽为143.5 MHz,这远比冷腔线宽窄,并且是纳米激光器和光子晶体激光器迄今报道的最窄值。窄线宽伴随着低功耗和超小的占地面积,因此使得这种特定激光器特别适合用作集成多功能传感器。