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Temperature control of the ultra-short laser pulse compression in a one-dimensional photonic band gap structure with nematic liquid crystal as a defect layer
Authors:Ramin Shiri  Alireza Bananej
Affiliation:1. Faculty of Physics, University of Tabriz, Tabriz, Iran;2. Photonics and Quantum Technologies Research School, NSTRI, Tehran, Iran;3. Photonics and Quantum Technologies Research School, NSTRI, Tehran, Iran
Abstract:
We investigate numerically the controllable chirped pulse compression in a one-dimensional photonic structure containing a nematic liquid crystal defect layer using the temperature dependent refractive index of the liquid crystal. We consider the structure under irradiation by near-infrared ultra-short laser pulses polarized parallel to the liquid crystal director at a normal angle of incidence. It is found that the dispersion behaviour and consequently the compression ability of the system can be changed in a controlled manner due to the variation in the defect temperature. When the temperature increased from 290 to 305 K, the transmitted pulse duration decreased from 75 to 42 fs in the middle of the structure, correspondingly. As a result, a novel low-loss tunable pulse compressor with a really compact size and high compression factor is achieved. The so-called transfer matrix method is utilized for numerical simulations of the band structure and reflection/transmission spectra of the structure under investigation.
Keywords:Photonic crystal  liquid crystal  chirp  dispersion  compression
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