Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1535790 | Optics Communications | 2013 | 6 Pages |
Abstract
The temporal responses and the reflected digital signal behaviors of a novel InAs/GaAs one-dimensional quantum dot resonant photonic crystal (QD-RPC) with 400 periods of unit cell, consisting of an InAs quantum dot (QD) layer and other GaAs barrier layer, are theoretically investigated by using a transfer matrix method. We demonstrate that the stopband (resonant photonic band gap) has fast response and the Nyquist rate is up to 1.15Â THz centered at Bragg reflection wavelength 1242.3Â nm. The square-wave time series with the duration of 10Â ps reflected by the stopband is transmitted and the intensity of pump light utilized is only 0.32Â MW/cm2 when this structure acts as an all-optical switch for a given temperature 45Â K and relative size fluctuation 0.1%. In addition, the extinction ratios of this optical switch associated with temperatures and signal pulse durations are analyzed and discussed.
Related Topics
Physical Sciences and Engineering
Materials Science
Electronic, Optical and Magnetic Materials
Authors
Zhenhua Hu, Houxiang Wu, Shen Gao, Tao Wang,