共查询到18条相似文献,搜索用时 140 毫秒
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详细推导了具有分布损耗波导结构的回旋行波放大器的色散特性。通过绝对不稳定性振荡出现的条件,给出求解具有损耗波导结构回旋行波管放大器的绝对不稳定性起振电流的数值计算方法。研究结果表明:绝对不稳定性起振电流与损耗波导的集肤深度有关,选择有较大的集肤深度的损耗波导可以提高绝对不稳定性起振电流;绝对不稳定性起振电流同时也与工作磁场偏离饱和磁场的程度以及电子束的纵横速度比有关;通过设计具有分布损耗波导结构的注-波互作用电路,以及工作磁场、电子束的纵横速度比,可以在兼顾带宽、效率的条件下,保证回旋行波管放大器稳定工作。 相似文献
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回旋行波管放大器是一种具有高功率、高频率、宽带宽的毫米波放大器,TE02模二次谐波回旋行波管放大器在保持基波回旋行波管放大器的基础上极大地减小了工作磁场,从而具有广阔的应用前景. 利用两段分布式损耗的互作用结构,有效抑制了绝对不稳定性和回旋返波振荡,避免了模式互作用电路引起的模式畸变,提高了输出功率,在一定程度上克服了谐波互作用较弱的缺点,满足了扩展功率容量和放大器长时间稳定工作的要求. 非线性模拟结果和粒子模型(particle in cell)模拟结果均表明,在工作电压为100k
关键词:
W波段
二次谐波
回旋行波管放大器 相似文献
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给出了一组描述同轴回旋行波放大器中波束相互作用的非线性自洽方程组,对该放大器的运行特性进行了研究。得到:在小信号区,辐射场的增益随同轴波导的内外半径比b/a的增加而增加,达到饱和时的辐射功率仅略有下降;内外导体管壁上的功率损耗密度随b/a的增加而减小。采用电压为90kV,电流为10A,纵向速度零散度为3%,速率比为1的电子束,在34.26~36.78GHz的频率范围内,计算得到了峰值功率约230kW的微波输出,相应的增益和效率分别为46.6dB和25.5%,带宽为7%,内外导体管壁上功率的最大损耗分别为80和56W/cm2。 相似文献
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绝对不稳定性是制约回旋行波管性能的主要因素之一。通过回旋行波管色散方程,详细分析了W波段基波回旋行波管绝对不稳定性的形成和特征,提出了采用多段损耗波导来抑制绝对不稳定性的方法。分析表明,绝对不稳定性的起振存在一定阈值,起振电流对电子注参数和电路参数极其敏感,确定起振电流是稳定器件工作的前提条件。通过PIC模拟,给出了采用无损耗波导结构,且工作电流为25 A和10 A条件下的放大器频谱图和功率图,结果表明绝对不稳定性的出现与否主要由工作电流是否超过起振的阈值电流决定,损耗波导是抑制绝对不稳定性的有效手段。 相似文献
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对70 GHz二次谐波倍频回旋速调管高频结构和电子与波互作用进行了研究。研究了TE02模腔体绕射品质因数及模式转化,解决了二次谐波倍频回旋速调管漂移段不能截止70 GHz的TE01模而引起的腔体间高频串扰的问题。分析了注电流、输入功率、电子横纵速度比和电子注引导中心半径等参数对输出功率、增益和效率的影响。针对二次谐波回旋速调管放大器工作频带窄、效率低,进行了高频结构优化设计,显著地展宽了工作频带,提高了互作用效率。在理论分析和高频计算的基础上,建立了注-波互作用PIC(粒子模拟)模型,进行了粒子模拟计算和优化,得到了70 GHz 的二次谐波倍频四腔回旋速调管放大器设计方案。粒子模拟结果表明:在工作电压70 kV,注电流13 A,电子注横向速度与纵向速度比为1.5时,中心频率69.81 GHz输出功率256 kW,带宽160 MHz,电子效率28%,饱和增益大于44 dB。 相似文献
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针对G波段真空电子器件对大功率、宽频带信号源的需求,开展了G波段三次谐波放大器研究。该放大器利用E波段行波管非线性互作用中的三次谐波电流,通过级联谐波互作用段实现G波段电磁波放大。高性能、实用化G波段宽频带大功率源的设计方案采用非半圆弯曲波导边界折叠波导,利用微波管模拟器套装(MTSS)软件对G波段三次谐波放大器进行模拟优化,结果显示,器件在15 GHz范围内可实现谐波输出功率>3.6 W,转换增益>33.3 dB,电子效率>0.36%。与其他工作在该频段的小型化太赫兹辐射源相比,谐波放大器在输出功率和带宽方面性能优越,为后续开展G波段三次谐波放大器的实际研制工作提供了设计基础。 相似文献
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根据谐波回旋速调管放大器的注-波互作用特点,对Ka波段二次谐波三腔回旋速调管放大器的输出腔进行了数值模拟和优化设计,获得了输出腔末端高频波绕射输出孔径和腔体绕射Q值的对应关系。通过PIC粒子模拟,分析了该放大器的频率响应特点等输出特性。结果表明,在35 GHz频率,磁场0.685 T,电子注电压70 kV,电流15 A,横纵速度比为1.45,输入功率1.6 kW时,放大器可以获得超过220 kW的峰值输出功率、约22%的效率和23 dB的增益,3 dB带宽可达到110 MHz。 相似文献
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Y. Y. Lau K. R. Chu L. Barnett V. L. Granatstein 《International Journal of Infrared and Millimeter Waves》1981,2(3):395-413
The small signal gain and bandwidth of the gyrotron travelling-wave amplifier (gyro-TWA) operating at the fundamental cyclotron harmonic are examined. The analytical and numerical studies focus on the effects of velocity spread in the electron beam and of a distributed wall resistivity in the waveguide. It is found that wall resistivity reduces the forward gain of the amplifier only by an amount approximately equal to 1/3 of the corresponding cold tube loss. Significant increase in bandwidth may result, under certain conditions, from the presence of wall resistivity. A moderate amount (5–10%) of velocity spread does not reduce the peak gain significantly in general, but may reduce the bandwidth by an amount depending on the applied magnetic field. Based on considerations of such factors as power, stability, gain, bandwidth, and efficiency, operating parameters for the gyro-TWA are suggested. 相似文献
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Choi J.J. Armstrong C.M. Ganguly A.K. Barsanti M.L. 《IEEE transactions on plasma science. IEEE Nuclear and Plasma Sciences Society》1994,22(4):465-475
A two-stage slow wave cyclotron amplifier is investigated to demonstrate a high power, stable, and broad Ka-band radiation source, operating at a low beam power (~60 kV, ~5 amps) and a low magnetic field (~7 kG). A linear theory predicts that the second harmonic gyro-BWO is competing in the amplifier and can be stabilized by inserting a sever in the interaction circuit. A slow-time-scale non-linear code, with a sever included, predicts a saturated gain of 24-28 dB, an efficiency of 15-17%, and an instantaneous bandwidth of 15-20% at a beam axial velocity spread of 2%. A broadband RF coupler, a mode converter, and a RF vacuum window are designed by the use of a 3D electromagnetic, finite element code. Measured RF characteristics are in good agreement with predictions 相似文献
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Temperature-dependent second harmonic generation process based on an MgO-doped periodically poled lithium niobate waveguide
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The temperature dependency of a 5-mol% MgO-doped periodically poled lithium niobate waveguide was investigated in this paper. We started with the temperature-dependent refractive index equation for the waveguide. Secondly, the temperature dependency of the second harmonic generation effect was experimentally researched under different temperatures and pump powers. The quasi-phase matched wavelengths, efficiency bandwidths and peak efficiencies of the waveguide were measured. The experimental results agreed with theoretical simulations, which are indispensable in the following all-optical sampling studies based on the cascaded second harmonic generation/difference-frequency generation process in the current device. 相似文献
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We propose and study in detail a phase-matched quadratic optical interaction in a realizable 2D double-slot lithium niobate (LN) waveguide. As opposed to the single-slot waveguide, the field can be well confined in the nanometric nonlinear material, and it is also more flexible for birefringence and dispersion design. The proposed compact double-slot structure could not only achieve form birefringence phase matching but also effectively enhance the modal overlap integral and expand the working wavelength. The calculated results on second harmonic generation show an extremely large bandwidth of ~40 nm. The modal overlap integral up to 0.035 W(3/2)/V can be realized by optimizing the waveguide geometry, and it is much better than previous results on single-slot waveguides. Its temperature dependence is low--around 25 °C. The geometry is practical considering the current micromachining technique of LN. 相似文献
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建立了带输入、输出波导结构的C波段相对论速调管放大器3维整管模型,利用3维软件对其高频特性进行了数值计算研究,对整管结构进行了优化设计。并用3维PIC程序对电子束经过输入腔后的束流调制、注入微波的吸收情况、中间腔对束流的调制以及输出腔后微波提取情况进行了模拟研究。模拟结果表明:输入腔与微波注入波导匹配较好,注入微波能被电子束和谐振腔很好吸收,在输入腔间隙后20 cm处得到了11%的基波电流调制深度;在中间腔后15 cm处得到了约76%的基波电流调制深度;在中间腔后电流调制最强处加上输出腔,提取到800 MW的输出微波,效率26%。 相似文献
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Bratman VL Cross AW Denisov GG He W Phelps AD Ronald K Samsonov SV Whyte CG Young AR 《Physical review letters》2000,84(12):2746-2749
First bandwidth measurements of a novel gyrotron amplifier are presented. The coupling between the second harmonic cyclotron mode of a gyrating electron beam and the radiation field occurred in the region of near infinite phase velocity over a broad bandwidth by using a cylindrical waveguide with a helical corrugation on its internal surface. With a beam energy of 185 keV, the amplifier achieved a maximum output power of 1.1 MW, saturated gain of 37 dB, linear gain of 47 dB, saturated bandwidth of 8.4 to 10.4 GHz ( 21% relative bandwidth), and an efficiency of 29%, in good agreement with theory. 相似文献
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建立了带输入波导结构的S波段速调管放大器输入腔开放腔模型,利用3维软件对其高频特性进行了数值计算研究,并对输入腔结构进行了优化设计。利用已加工的输入腔进行了高频参数的冷测实验研究,实验中的输入腔结构尺寸与高频分析中的完全相同,实验结果与高频分析结果一致。用3维PIC程序对电子束经过该输入腔后的束流调制以及注入微波的吸收情况进行了模拟。模拟结果表明:该输入腔与微波注入波导匹配很好,注入微波能被电子束和谐振腔全部吸收,在输入腔间隙后37 cm处得到了13%的基波电流调制深度。 相似文献