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硅-聚合物混合系统中的太赫兹全光调制

Terahertz all-optical modulation in a silicon-polymer hybrid system.

作者信息

Hochberg Michael, Baehr-Jones Tom, Wang Guangxi, Shearn Michael, Harvard Katherine, Luo Jingdong, Chen Baoquan, Shi Zhengwei, Lawson Rhys, Sullivan Phil, Jen Alex K Y, Dalton Larry, Scherer Axel

机构信息

Department of Applied Physics, California Institute of Technology, 1200 E California Blvd, Pasadena, CA 91125, USA.

出版信息

Nat Mater. 2006 Sep;5(9):703-9. doi: 10.1038/nmat1719. Epub 2006 Aug 20.

Abstract

Although gigahertz-scale free-carrier modulators have been demonstrated in silicon, intensity modulators operating at terahertz speeds have not been reported because of silicon's weak ultrafast nonlinearity. We have demonstrated intensity modulation of light with light in a silicon-polymer waveguide device, based on the all-optical Kerr effect-the ultrafast effect used in four-wave mixing. Direct measurements of time-domain intensity modulation are made at speeds of 10 GHz. We showed experimentally that the mechanism of this modulation is ultrafast through spectral measurements, and that intensity modulation at frequencies in excess of 1 THz can be obtained. By integrating optical polymers through evanescent coupling to silicon waveguides, we greatly increase the effective nonlinearity of the waveguide, allowing operation at continuous-wave power levels compatible with telecommunication systems. These devices are a first step in the development of large-scale integrated ultrafast optical logic in silicon, and are two orders of magnitude faster than previously reported silicon devices.

摘要

尽管千兆赫兹级的自由载流子调制器已在硅中得到证实,但由于硅的超快非线性较弱,尚未有关于太赫兹速度运行的强度调制器的报道。我们基于全光克尔效应(四波混频中使用的超快效应),在硅聚合物波导器件中实现了光对光的强度调制。在10 GHz的速度下对时域强度调制进行了直接测量。我们通过光谱测量实验表明,这种调制机制是超快的,并且可以获得超过1太赫兹频率的强度调制。通过将光学聚合物通过倏逝耦合集成到硅波导中,我们大大提高了波导的有效非线性,从而能够在与电信系统兼容的连续波功率水平下运行。这些器件是硅中大规模集成超快光学逻辑发展的第一步,比之前报道的硅器件快两个数量级。

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