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1.
 在L波段使用1.3 GHz载波频率的微波脉冲辐照微型计算机主板,通过改变脉冲宽度、重复频率和脉冲串长度等参数,实验研究了微波脉冲辐照导致微型计算机失去响应的功率阈值的变化规律,讨论了L波段微波脉冲辐射的积累效应。实验结果表明:当微波脉冲宽度增加时,微波功率阈值下降;当微波脉冲重复频率升高时,微波功率阈值呈下降趋势;在固定重复频率的条件下,微波脉冲数目的增加也会导致微波功率阈值的下降;微波脉冲功率阈值始终小于连续波微波的功率阈值。当微波脉冲间隔时间较长或者脉冲宽度较宽时,微波功率阈值由单个微波脉冲的参数确定,与脉冲重复频率没有明显关系。利用假设的微波脉冲辐射积累效应,可以定性解释和分析微波脉冲辐照微型计算机实验中功率阈值变化的趋势。  相似文献   

2.
为了简化和改善光载无线通信系统,提出了一种光探测器偏压调制技术,利用PIN光探测器(PIN-PD)和单行载流子光探测器(UTC-PD)的输出光电流随偏压变化的特性进行调制.采用光探测器偏置调制技术,光电探测和调制可以在一个光探测器上同时实现.研究表明当入射光功率为2.93dBm时,PIN-PD在10GHz射频副载波上的调制带宽为800 MHz,UTC-PD在150GHz射频副载波上的调制带宽为18.75GHz.调制带宽随入射光功率的增大而增大,当入射光功率为12.93dBm时,UTC-PD在150GHz射频副载波上的调制带宽可达25GHz.调制深度与正弦偏压调制信号的最小值有关.  相似文献   

3.
选取一种典型的音频功率放大电路,采用直接功率注入法研究了音频功放电源的电磁干扰效应。分析了电路的电磁干扰耦合机理,设计了基于直接功率注入法的电源电磁干扰测试平台,测试得到0.1~1 GHz电磁干扰对音频放大电路直流电源的干扰效果数据,得出临界失真、典型失真和完全失真三种状态下的功率阈值与干扰频率规律曲线。结果表明:测试频段内,三种失真状态下的失真功率阈值随频率的变化关系一致,失真功率阈值相差约2 dBm。当注入干扰的频率较低时(100~300 MHz),失真功率阈值较高,且随频率增大近似以幂函数趋势下降;当注入干扰频率高于300 MHz时,失真功率阈值随频率增大呈减幅振荡趋势。  相似文献   

4.
 利用设计的三反相器模数(A/D)转换电路,开展了P波段微波注入实验。采用眼图观测法对电路的线性响应进行了有效测量,推导了实验线路中微波注入效率公式,利用一种实时温度检测电路来验证芯片工作状态的稳定性,并利用统计检验的方法分析了不同芯片及电路板等对实验数据获取的影响,从而保证了实验的有效性和可信度。重点研究了注入微波的幅值、频率、脉宽及重复频率等参数对反相器正常工作的影响。实验结果表明:当注入微波信号脉宽大于70 ns时,电路信号在微波脉冲结束后,相邻脉冲脉宽变化10%的非线性干扰功率阈值,比使电路信号噪声容限降低50%的功率阈值大4~6 dB,电路信号脉宽变化30%的功率阈值比脉宽变化10%的大2~3 dB,在功率小于32 dBm的实验中得到的最大非线性干扰为脉宽变化约40%。非线性干扰阈值随注入微波信号脉宽变化明显,拐点为40~70 ns。注入微波的重复频率对微波干扰阈值影响很小。  相似文献   

5.
采用理论分析和微波注入实验相结合的方法,分别研究了以74HC04和74LVCU04A两种芯片为核心的反相器基本缓冲及数模转换电路的微波效应问题,通过反相器闩锁过程对非线性扰乱进行了机理分析,并利用微波注入实验详细分析了非线性扰乱效应的微波有效功率阈值及其随频率、脉冲宽度的变化。实验结果表明:在固定环境温度条件下,有效注入功率大于33 dBm,频率在3 GHz以下的微波均可使74HC04效应电路的非线性扰乱强度达到10%以上;有效注入功率大于30 dBm,频率在3 GHz以下的微波均可使74LVCU04A效应电路的非线性扰乱强度达到10%以上。相同非线性扰乱强度的注入有效功率阈值近似随频率的提高而增大。非线性扰乱阈值随注入微波信号脉宽变化明显,拐点为40~70 ns不等,与反相器中的互补型金属氧化物半导体器件寄生三级管的导通电流积累有关。  相似文献   

6.
张艳峰  李刚  张玉驰  张鹏飞  王军民  张天才 《物理学报》2011,60(10):104206-104206
通过直接对减反膜外腔反馈半导体激光器进行电流调制的方法,得到了两束位相锁定且频率差在6.0-9.3GHz范围内连续可调的激光,其中6.835和9.192GHz分别对应Rb87和Cs133原子基态超精细能级之间的频率差,激光功率分别可以达到6.87mW和5.09mW. 根据减反膜外腔反馈半导体激光器的特点,通过调整外腔腔长、激光器工作温度、电流以及所加射频调制信号的功率和频率,在调制频率小于等于4.0GHz时可以将载波完全压制. 调制频率大于4.0GHz时,虽不能将载波完全压制,但由于外腔与调制频率共振时对调制的增强也得到了调制深度很高的激光,并对其中的物理机理作了分析. 通过后续滤波等方法处理以后,该拉曼光源可以广泛应用到原子的量子操控中. 关键词: 受激拉曼光 高频调制 调制增强  相似文献   

7.
毛嵩  吴正茂  樊利  杨海波  赵茂戎  夏光琼 《物理学报》2014,63(24):244204-244204
实验研究了处于单周期振荡的光注入半导体激光器在频率等于单周期振荡频率一半的1/2次谐波调制下所产生的微波信号的特性.实验结果显示:在合适的注入条件下,处于单周期(P1)振荡的光注入半导体激光器可输出频率可达26.5 GHz、光谱具有单边带结构的光生微波信号,但微波信号的线宽比较宽(MHz量级);通过采用频率为单周期振荡频率一半的次谐波信号调制光注入半导体激光器,可将微波线宽从十几MHz压缩到几十k Hz.进一步分析了次谐波调制信号的功率以及频率对微波信号的相位噪声的影响,并在由次谐波调制信号的功率和频率构成的参数空间绘制出了能实现次谐波频率锁定的分布区域.  相似文献   

8.
 对36单元高功率双层径向线螺旋阵列天线的功率容量进行了研究。讨论了真空状态下的微波击穿和真空与大气交界面的微波击穿,以这两种状态下的击穿阈值为依据,论证了阵列天线实现1 GW高功率微波辐射的可行性。采用有限元软件数值模拟了中心频率为4.0 GHz的阵列天线的功率容量,给出了模拟结果并分析了功率容量降低的原因;提出了提高阵列天线功率容量的技术途径。结果表明:改进的高功率双层径向线螺旋阵列天线可以实现1 GW高功率微波的发射。  相似文献   

9.
光在水中传输时的吸收和散射效应使得激光的水下传输特性变得复杂,尤其是后向散射会造成目标对比度降低,导致利用激光进行水下探测时面临挑战,而载波调制技术可以用来抑制水下激光雷达的后向散射。利用基于蒙特卡罗方法的计算机仿真技术建立余弦调制高斯脉冲激光水下传输模型,并讨论光载微波脉冲宽度、调制频率和调制深度等参数对探测结果的影响。结果表明:相比于传统脉冲激光雷达的仿真结果,载波调制相关检测技术可以有效提高水下目标对比度;脉冲宽度存在最佳值,调制频率对目标回波信号的信噪比和测距精度有影响,调制深度越大,目标回波信号的信噪比越高。  相似文献   

10.
 采用4只HSMS 282肖特基二极管阵列,对大功率微波整流电路进行了研究。构造了基于微带线结构的2.45 GHz高效微波整流电路,将微波整流单元电路的输入功率提升到33 dBm。仿真和实验结果表明,在一定微波输入功率的条件下,整流电路在负载较大范围内变化时保持了高整流效率。通过在不同微波输入功率和负载下进行测量,发现当输入微波功率为27.0~31.7 dBm之间变化时,最高整流效率均达到了60%以上,当微波输入功率为30 dBm时,微波整流电路效率达到了63.3%。  相似文献   

11.
The radiation spectrum of a plasma relativistic microwave oscillator with a pulse power of 50 MW operating in the 10-GHz frequency range is studied experimentally. During a 60-ns-long microwave pulse, the radiation frequency may both remain constant and change by more than 1.5 GHz. The pressure of a gas that ionizes in the microwave field has a significant effect on the radiation frequency and thereby changes the concentration of a pregenerated plasma.  相似文献   

12.
吴洋  金晓  马乔生  李正红  鞠炳全  苏昶  许州  唐传祥 《物理学报》2011,60(8):84101-084101
根据两腔振荡器和返波管的特点研制了过模结构返波振荡器, 该器件主要由调制腔和换能腔(慢波结构)两部分组成. 调制腔既是电子束的预调制腔, 也是微波谐振反射腔, 它同换能腔形成一个过模微波谐振腔,经调制腔调制后的电子束在换能腔中实现束波能量转换. 根据加速器的电子束参数(束压为1 MV,束流为20 kA)设计了一个X波段的高功率微波器件,2.5维粒子模拟程序模拟得到微波频率为8.25 GHz,输出功率为5.70 GW. 用超导磁体作为引导磁场,单次运行输出微波功率为5.20 GW,微波频率为(8.25±0. 关键词: 两腔振荡器 返波振荡器 多波切连科夫发生器  相似文献   

13.
The effect of microwave radiation in the frequency range from 1.2 to 10 GHz on the magnetoresistance of a high-mobility two-dimensional electron gas has been studied in a GaAs quantum well with AlAs/GaAs superlattice barriers. It has been found that the microwave field induces oscillations of this magnetoresistance, which are periodic in the reciprocal magnetic field (1/B). It has been shown that the period of these oscillations in the frequency range under study depends on the microwave radiation power.  相似文献   

14.
基于偏振调制和光的干涉原理,设计了同时具有正系数和负系数特性的微波光子滤波器,并通过搭建实验模型证实了方案的可行性。利用偏振调制及光的偏振特性实现载波和一阶边带的正交偏振,并通过改变偏振调制器的偏置电压分别对载波和一阶边带引入相移。当载波和一阶边带的相位差为0或90时,利用保偏光纤快慢轴上两正交偏振光在同一偏振态上的干涉效应,分别对应实现具有负系数或正系数特性的微波光子滤波器。最后,测量并验证了0~15 GHz频率范围内滤波器的频率响应。  相似文献   

15.
A photonic approach for microwave/millimeter-wave (MMW) frequency measurement is proposed and demonstrated based on stimulated Brillouin scattering (SBS) of a 20-km standard single mode fiber (SSMF). After the MMW signal is modulated to a laser source with two sidebands using optical carrier suppression (OCS) modulation, its frequency can be easily measured by monitoring the SBS-induced amplification with a power meter. Due to the 1-pm resolution of a tunable pump laser source, a frequency measurement range of 1–40 GHz is demonstrated in our experiment with a frequency resolution of 125 MHz. We believe the frequency measurement range can be further extended to satisfy photonic radar front-end processing application.  相似文献   

16.
The effect of microwave radiation in the frequency range from 1.2 to 10 GHz on the magnetoresistance of a high-mobility two-dimensional electron gas has been studied in a GaAs quantum well with AlAs/GaAs superlattice barriers. It has been found that the microwave field induces magnetoresistance oscillations periodic in the reciprocal magnetic field (1/B). It has been shown that the period of these oscillations in the covered frequency range depends on the microwave radiation power.  相似文献   

17.
A novel photonic technique for instantaneous frequency measurement of microwave signal based on phase modulation to intensity modulation conversion is proposed and demonstrated. In the proposed system, an optical carrier is modulated by a microwave signal with its frequency to be measured through a phase modulator. The phase-modulated optical signal is then converted to intensity-modulated signals in two independent paths using a dispersive media and a frequency discriminator respectively. Since the dependence of the received microwave power on the input microwave frequency in the two paths differs, the microwave power ratio between the two paths can be used to uniquely determine the microwave frequency. The major advantages of the approach lie in that only one laser source and the bias-free phase modulator is employed in the system, which improves the stability of the system. Experimental demonstrations of the frequency measurement based on the proposed approach are presented.  相似文献   

18.
We studied a response of Bi-2212 mesa type structures to 100 GHz microwave radiation. We found that applying magnetic field of about 0.1 T across the layers enables to observe collective Shapiro step response corresponding to a synchronization of all 50 intrinsic Josephson junctions (IJJ) of the mesa. At high microwave power we observed up to 10th harmonics of the fundamental Shapiro step. Besides, we found microwave induced flux-flow step position of which is proportional to the square root of microwave power and that can exceed at high enough powers 1 THz operating frequency of IJJ oscillations. The article is published in the original.  相似文献   

19.
Compact laser sources operating in mid infrared spectral region with stable emission are important for applications in spectroscopy and wireless communication. Quantum cascade lasers (QCL) are unique semiconductor sources covering mid infrared frequency range. Based on intersubband transitions, the carrier lifetime of these sources is in the ps range. For this reason their frequency response to direct modulation is expected to overcome the limits of standard semiconductor lasers. In this work injection locking of the roundtrip frequency of a QCL emitting at 9 μm is reported. Inter modes laser frequency separation is stabilized and controlled by an external microwave source. Designing an optical waveguide embedded in a microstrip line a flat frequency response to direct modulation up to 14 GHz is presented. Injection locking over MHz frequency range at 13.7 GHz is demonstrated. Numerical solutions of injection locking theory are discussed and presented as tool to describe experimental results.  相似文献   

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