论文标题
通过等离子耦合表面状态的波长转换
Wavelength conversion through plasmon-coupled surface states
论文作者
论文摘要
表面状态通常通过提高电荷注入屏障高度,引入局部陷阱状态,诱导表面泄漏电流并改变电势来降低半导体装置的性能。因此,无休止地努力使用各种表面钝化处理来抑制地面状态的不良影响。我们表明,可以利用表面状态创建的巨大内置电场,以实现无线电波长转换,而无需使用任何非线性光学现象。光启用的表面等离子体耦合到表面状态,以产生电子气体,该电子气体通过表面状态产生的巨大电场路由到纳米annna阵列。纳米antennas上的诱导电流,其中包含不同光学频率成分的混合产物,在入射光子的beat频率下产生辐射。我们利用等离子体耦合表面状态的前所未有的功能来证明在1550 nm中心波长向Terahertz策略的纳米joule光脉冲的被动波长转化,具有创纪录的高效效率,这些效率超过了4型量的非线性光学方法。提出的方案可用于通过使用适当的光学节拍频率的光波长转换到电磁光谱的不同部分。
Surface states generally degrade semiconductor device performance by raising the charge injection barrier height, introducing localized trap states, inducing surface leakage current, and altering the electric potential. Therefore, there has been an endless effort to use various surface passivation treatments to suppress the undesirable impacts of the surface states. We show that the giant built-in electric field created by the surface states can be harnessed to enable passive wavelength conversion without utilizing any nonlinear optical phenomena. Photo-excited surface plasmons are coupled to the surface states to generate an electron gas, which is routed to a nanoantenna array through the giant electric field created by the surface states. The induced current on the nanoantennas, which contains mixing product of different optical frequency components, generates radiation at the beat frequencies of the incident photons. We utilize the unprecedented functionalities of plasmon-coupled surface states to demonstrate passive wavelength conversion of nanojoule optical pulses at a 1550 nm center wavelength to terahertz regime with record-high efficiencies that exceed nonlinear optical methods by 4-orders of magnitude. The presented scheme can be used for optical wavelength conversion to different parts of the electromagnetic spectrum ranging from microwave to infrared regimes by using appropriate optical beat frequencies.