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    • 1. 发明申请
    • EIT-BASED PHOTONIC LOGIC GATE
    • 基于EIT的光电逻辑门
    • US20130016411A1
    • 2013-01-17
    • US13421461
    • 2012-03-15
    • Teh-Chau LIAUJian-Qi SHENJin-Jei WUTzong-Jer YANG
    • Teh-Chau LIAUJian-Qi SHENJin-Jei WUTzong-Jer YANG
    • G02F3/00
    • G02F3/00G02F2202/32
    • The present invention provides an EIT-based photonic logic gate, which is constituted by EIT-based stack layers of periodic array of photonic crystal (PCs) layers and EIT (Electromagnetic Induced Transparent) material layers. The input probe signals are incident on the first photonic crystal layer, passing through one or more than one PCs-EIT interfaces and transmitted out from the last EIT material layer. Control filed as the enable signals are incident on each EIT layer to activate the optical logic gate. By varying the detune frequency of probe field and Rabi frequency of control field, its band gap structure can be adjusted. Henceforth, the tunable optical EIT-based photonic logic gate can be achieved as user required.
    • 本发明提供了一种基于EIT的光子逻辑门,其由基于光子晶体(PC)层和EIT(电磁感应透明)材料层的周期性阵列的基于EIT的堆叠层构成。 输入探测信号入射在第一个光子晶体层上,通过一个或多个PC-EIT接口并从最后的EIT材料层传出。 作为使能信号的控制被入射到每个EIT层上以激活光逻辑门。 通过改变探测场的失调频率和控制场的Rabi频率,可以调整其带隙结构。 从此以后,可以根据用户需要实现可调光学的基于EIT的光子逻辑门。
    • 2. 发明授权
    • EIT-based photonic logic gate
    • 基于EIT的光子逻辑门
    • US08675268B2
    • 2014-03-18
    • US13421461
    • 2012-03-15
    • Teh-Chau LiauJian-Qi ShenJin-Jei WuTzong-Jer Yang
    • Teh-Chau LiauJian-Qi ShenJin-Jei WuTzong-Jer Yang
    • G06E3/00G02F3/00
    • G02F3/00G02F2202/32
    • An electromagnetically induced transparent (EIT)-based photonic logic gate. The electromagnetically induced transparent (EIT)-based photonic logic gate is a photonic crystal (PC) and electromagnetically induced transparent (EIT)-based stacked layer which is constituted by a photonic crystal (PCs) layers and an electromagnetically induced transparent material layers. For the photonic crystal (PCs) and electromagnetically induced transparent (EIT)-based stacked layer, a probe field is an input signal which is emitted from the photonic crystal layer and a control field is a control signal which is emitted from the electromagnetically induced transparent material layers. The probe field is an input signal which is emitted from the electromagnetically induced transparent material layers. By varying the detune frequency of probe field and Rabi frequency of control field, the band gap structure can be adjusted. Henceforth, the tunable optical electromagnetically induced transparent (EIT)-based photonic logic gate can be achieved.
    • 基于电磁感应透明(EIT)的光子逻辑门。 基于电磁感应透明(EIT)的光子逻辑门是由光子晶体(PCs)层和电磁感应透明材料层构成的光子晶体(PC)和电磁感应透明(EIT)基层叠层。 对于光子晶体(PC)和电磁感应透明(EIT)的堆叠层,探测场是从光子晶体层发射的输入信号,控制场是从电磁感应透明 材料层。 探针场是从电磁感应透明材料层发射的输入信号。 通过改变探头场的失调频率和控制场的Rabi频率,可以调整带隙结构。 此后,可以实现可调光电磁感应透明(EIT)的光子逻辑门。