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Methods of spectrally pure two-frequency radiation forming for terahertz carriers generation in optical range

机译:用于在光学范围内生成太赫兹载波的频谱纯净的两频辐射形成方法

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One of the promising methods for generating continuous terahertz radiation is the method of photomixing, when the photoconductive material is excited by the emission of two optical continuous lasers with frequencies separated by terahertz frequencies. It should be noted that for effective photomixing the polarization, frequencies and phases of the optical beams introduced into the mixer must be constant, otherwise it is necessary to additionally use a complex system of phase synchronization. In connection with the complexity of such an implementation, variants based on the conversion of single-frequency and broadband laser radiation into two-frequency ones were investigated. The first of these is modulation and consists in the external modulation of single-frequency laser radiation in the electro-optical Mach-Zehnder modulator. The second one is broadband with the allocation of two wavelengths using two rectangular fiber Bragg gratings with a small difference in width. The studies of the first variant showed some boundedness of the obtained difference frequencies at the bottom of the terahertz range. In the claimed embodiment, it is difficult to use methods for obtaining two-frequency radiation with a predetermined difference frequency based on external electro-optical modulation of single-frequency coherent radiation. Since even on InP-modulators it is possible to obtain a difference frequency only in the region of 0.2-0.4 THz. Development of this option can be obtained by using tandem or multiplicative inclusion of several modulators. In the second embodiment, as a pumping source with a dual frequency radiation with a predetermined difference frequency lying in the region of 1.0 THz, a fiber laser with an output driver based on two rectangular fiber Bragg gratings with a small difference in width was investigated. The required ratios of the frequencies and amplitudes of the two-frequency components of the radiation were provided by the technology of recording gratings on an ultraviolet laser, the polarization ratios were determined by the characteristics of the selected laser, the ellipticity, and the quality of the optical fiber. The main factor in the instability of the pump system was determined by the temperature stability in the laser housing, where the two-frequency shaper was also positioned. The increase in the difference frequencies was limited by the group phase delay of the gratings, for the compensation of which the consecutive inclusion of the gratings was used. The studies were carried out to create a terahertz photoconductor, the distinguishing feature of which is the use of heterostructures grown on a GaAs substrate in the low-temperature regime as a photoconductive material in the form of a thick gradient layer In(x)Al(1-x)As (x = 0 → 1) with artificially created local deformations and with photoconductive composite InGaAs/InAs/InGaAs quantum wells.
机译:产生连续太赫兹辐射的一种有前途的方法是光混合法,当光导材料通过发射两个以太赫兹频率分开的光学连续激光器而被激发时。应当注意,为了有效地光混合,偏振,引入混合器中的光束的频率和相位必须恒定,否则必须额外使用复杂的相位同步系统。考虑到这种实现的复杂性,研究了基于将单频和宽带激光辐射转换为双频激光辐射的变体。首先是调制,它是在电光Mach-Zehnder调制器中对单频激光辐射进行外部调制。第二个是宽带,使用两个矩形光纤布拉格光栅来分配两个波长,两个矩形光纤的宽度差异很小。对第一个变体的研究表明,所获得的差分频率在太赫兹范围的底部具有一定的有界性。在要求保护的实施例中,难以使用基于单频相干辐射的外部电光调制来获得具有预定差频的两频辐射的方法。因为即使在InP调制器上,也可能仅在0.2-0.4 THz的范围内获得差频。可以通过串联或乘性包含多个调节剂来获得此选项的开发方法。在第二实施例中,作为具有预定差频率在1.0THz范围内的双频辐射的泵浦源,研究了具有基于两个宽度差异小的矩形矩形布拉格光栅的具有输出驱动器的光纤激光器。辐射的两个频率分量的频率和振幅的所需比率是通过在紫外线激光器上记录光栅的技术来提供的,偏振比率是由所选激光器的特性,椭圆率和质量决定的。光纤。泵系统不稳定的主要因素取决于激光器外壳中的温度稳定性,在该激光器外壳中还放置了两频整形器。差频率的增加受到光栅群相位延迟的限制,为了补偿,使用了光栅的连续包含。进行了研究以创建太赫兹光电导体,其显着特征是使用在低温状态下在GaAs衬底上生长的异质结构作为厚梯度层In(x)Al( 1-x)As(x = 0→1)具有人工产生的局部变形和光导复合InGaAs / InAs / InGaAs量子阱。

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