标题: 利用同调多级光整流技术于硒化镓晶体中产生兆赫辐射
Generation of terahertz radiation by coherenct multiple-stage of optical rectification in GaSe crystals
作者: 林育贤
Yu-Shian Lin
潘犀灵
安惠荣
Ci-Ling Pan
Hyeyoung Ahn
光电工程学系
关键字: 兆赫;terahertz
公开日期: 2007
摘要: 本论文成功地建构一套理论模型以解释非线性光学中光整流的机制行为。在考虑相位匹配参数及晶体的吸收系数的情况下,理论模拟利用超快雷射于硒化镓晶体内光波混频以产生兆赫辐射。而理论模拟于频域上的光谱及时域上的波形的结果,可配合实验数据来证实理论模型的正确性。进一步,将理论模型延伸于多级光整流的范畴,并检视兆赫辐射于多级光整流情形下的同调机制与行为。
我们于实验中利用多级光整流技术产生兆赫辐射,并透过调控两级兆赫辐射之间的时间延迟关系,可以使兆赫辐射同调叠加并且拥有较高能量输出,进一步证实此技术有应用于兆赫辐射任意波形调控的潜力。接着,利用光谱干涉法的分析方法,可得知两级产生的兆赫辐射在不同的时间延迟下的同调关系在1 THz以下可达0.8~0.95。另外,经由实验结果拟合出兆赫辐射于硒化镓晶体内的非线性吸收截面系数范围约为(1.3-5.9)×10-17 cm2。
多级光整流技术预期可以克服非线性晶体长度与晶体内群速度不匹配的限制,以同调串联的方式产生高强度的兆赫辐射。经由理论模型计算的最佳化结果得知,使用超快雷射高脉冲能量产生经由多级光整流方式产生兆赫辐射的输出可达400.8 nJ。
In this thesis, we successfully construct a theoretical model to interpret the optical rectification process in nonlinear optics. Generation of terahertz radiation via frequencies mixing in GaSe crystal by use of the ultra-fast pulses laser is theoretically simulated by taking into account of the phase-matching parameter and absorption coefficient of nonlinear optical crystal. The frequency spectra and time-domain waveforms of terahertz radiation deduced from the numerical simulation are verified by the experimental results. Furthermore, this theoretical model can be extended to the application of coherent multi-stage optical rectification technique.
We experimentally generated terahertz radiation via multi-stage optical rectification process. By accurately adjusting the time delay between the two terahertz radiation from the two stages, the terahertz radiation can be coherently superposed with higher output power. This technique verifies the great potential of spectral synthesis of terahertz radiation. Moreover, it is observed that the coherence between the two terahertz radiation from the two stages is as high as 0.8~0.95 by the analysis of spectral-interfeometry method. Besides, the nonlinear absorption coefficient cross-section of GaSe crystal at terahertz frequencies is experimentally fitted in the range of (1.3-5.9)×10-17 cm2.

Multi-stage optical rectification technique is expected to overcome the interaction length inside the nonlinear crystal, which is usually limited by group velocity mismatching. The high power terahertz radiation can be generated by coherently cascaded optical rectification processes in GaSe crystals. Under the numerical optimization, the single-cycle terahertz radiation can be generated with pulse energy as high as 400.8 nJ by use of the multi-stage optical rectification technique.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009524535
http://hdl.handle.net/11536/38911
显示于类别:Thesis


文件中的档案:

  1. 453501.pdf

If it is a zip file, please download the file and unzip it, then open index.html in a browser to view the full text content.