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1.
史庆藩  郑俊娟  王琪 《物理学报》2004,53(10):3535-3539
基于Safonov和Yamazaki所发展的激励自旋波非线性辐射衰减的理论[J. MMM. 161 (1996 ) 275], 考虑磁激子与磁激子以及磁激子与光子的两种非线性相互作用过程,计算了微波谐振腔Q值对磁激子振幅不稳定态阈值的影响,结果与实验数据基本一致. 关键词: 磁激子 谐振器 铁磁体  相似文献   

2.
王建国  葛德彪 《计算物理》1997,14(6):755-759
应用非正交网格时域有限差分算法,模拟了在高斯脉冲和高斯脉冲调制正弦波激励下有激励孔微波谐振腔的激励和谐振过程,分析了谐振频率。模拟结果表明;在微波谐振腔内,激发出了最接近脉冲激励源主频的若干个谐振态。  相似文献   

3.
同轴谐振腔高阶横磁模式参数的研究   总被引:7,自引:0,他引:7       下载免费PDF全文
董玉和  丁耀根  肖刘 《物理学报》2005,54(12):5629-5636
理论计算和分析了微波圆柱同轴谐振腔高阶横磁(TM)模式的系列关联参数.研究发现:与圆柱腔相比, 同轴谐振腔的TMn10模式有较大的模式间隔,即工作模式能够远离非工作模式的干扰,这有利于保持器件稳定的频率和功率;在保持腔长不变、腔横截面外半径取特定值时,腔内电场峰值位置的轴向特性阻抗随内径的变化存在极大值;在高频段可以采用任意大横截面的腔体结构和任意阶的模式.计算结果与仿真结果相一致. 关键词: 高阶横磁模式 圆柱同轴谐振腔 特性阻抗 多注速调管  相似文献   

4.
微波谐振腔中电子与微波作用的非稳态过程研究   总被引:3,自引:2,他引:1       下载免费PDF全文
 在微波腔中微波场影响电子的运动,同时电子束作为电流源也产生辐射,影响微波场,这种相互作用包含线性和非线性过程。根据Maxwell理论,微波腔中的实际微波场可以按微波腔的模式展开,而且不同模式与电子束之间的相互作用不同。将电子束作为激励源,根据Maxwell方程和电子受到的洛伦兹力,建立不同模式在电子束作用下的激励方程和电子束电子在不同模式作用下的运动方程(即微波谐振腔中电子束与微波场相互作用的自洽方程组),并由此进一步分析一维情况下单间隙微波腔中微波建场、辐射场呈指数增长和饱和等非稳态作用过程,该过程涉及到电子束与微波作用的线性和非线性过程。  相似文献   

5.
李正红  黄华  常安碧  孟凡宝 《物理学报》2005,54(4):1564-1571
将电子束作为激励源,根据Maxwell方程和电子受到的洛伦兹力,给出了描述工作模式在电 子束作用下的激励方程和电子束电子在工作模式作用下的运动方程(即微波谐振腔中电子束 与微波场相互作用的自洽方程组).根据该自洽方程组,进一步研究了任意时间分布电子束 与单间隙微波腔的相互作用.通过分析微波腔中电子束与微波作用的线性和非线性过程,给 出了电子束调制深度、微波腔作用间隙对微波输出功率的影响.最后从理论上给出了影响微 波输出功率的综合物理参量. 关键词: 微波腔 模式 自洽方程 单间隙微波腔  相似文献   

6.
利用数值方法计算了磁绝缘线振荡器(MILO)主慢波结构谐振腔和扼流腔的谐振频率和场分布,得出慢波结构谐振腔谐振频率的一些变化规律:随着叶片内半径的增大、叶片外半径的减小、叶片周期的减小以及叶片间距的减小,谐振腔TM01模式截止频率升高;而阴极半径的变化对截止频率几乎无影响。当主慢波结构腔内半径为4.6cm,扼流腔内半径为4.2cm,阴极半径为3cm时,MILO工作在3.“4.4GHz频率范围,扼流片可以阻止微波功率向脉冲功率源泄漏,这有利于提高器件微波输出的效率;  相似文献   

7.
 建立了基于谐振腔深度角向分区的L波段双频磁绝缘线振荡器的模型,并采用数值研究的方法,开展了双频磁绝缘线振荡器主慢波结构的色散特性分析,同时还研究了封闭结构和开放结构的双频磁绝缘线振荡器的谐振腔,得到其谐振频率、场分布、Q值等信息,从高频特性研究的角度来进一步验证了双频磁绝缘线振荡器产生稳定的双频率高功率微波的可行性。研究表明:双频磁绝缘线振荡器的高频结构可以分区工作,每一个分区对应一个谐振频率。  相似文献   

8.
新型虚阴极振荡器的研究   总被引:6,自引:5,他引:1       下载免费PDF全文
 采用小信号理论,在考虑到透射、反射束电子不同作用下,分析了虚阴极振荡器产生微波的机制,获得了计算微波主频的方法,讨论了增强束波作用效率的方法,并提出一种新型结构的虚阴极振荡器。该振荡器的阳极后放置了一个谐振腔,谐振腔长度很小,虚阴极不能在其中形成,谐振腔受到反射电子束激励并建立强场,场对入射电子进行调制,同时采用同轴结构引出微波。利用2.5D PIC 程序对新型的结构进行了数值模拟,验证了理论分析的正确性。在入射电子束电子能量为520keV和电子束流12.5kA的条件下,获得微波平均功率为1GW,频率为3.66GHz,平均束波转换效率为15.3%。  相似文献   

9.
L波段双频磁绝缘线振荡器的实验研究   总被引:1,自引:0,他引:1       下载免费PDF全文
根据角向分区产生双频率高功率微波(HPM)的设计思路,开展了基于谐振腔深度角向分区模型的L波段双频磁绝缘线振荡器(BFMILO)的实验研究,建立了BFMILO的实验系统和测量系统,热测了BFMILO的辐射方向图,通过辐射场功率密度积分得到了输出微波的功率.在电子束电压约为420kV,管电流约为34kA的条件下,L波段BFMILO输出的微波频率分别为1.26GHz和1.45GHz,对应的微波功率分别为398MW和222MW.并初步得到了谐振腔深度的角向分区比例不同的BFMILO的初步实验结果.实验研究得到了 关键词: 角向分区 磁绝缘线振荡器(MILO) 双频MILO(BFMILO) 高功率微波(HPM)  相似文献   

10.
磁致伸缩换能器辐射板形状对声场分布的影响   总被引:1,自引:0,他引:1  
磁致伸缩换能器可作为热声制冷机的声源装置,辐射板的形状直接影响声压输出效率,从而影响制冷效果。为提高换能器工作效率、减小换能器体积,辐射板需在Terfenol-D棒的激励下产生大振幅、高频率的活塞振型。针对这一问题,应用ATILA软件分析了磁致伸缩换能器辐射板形状对谐振腔振动幅频特性的影响以及对谐振腔内声场分布的影响。结果表明:相同激励条件下,凹球面辐射板出现活塞振型时振幅最大,对应谐振腔中声压幅值最高;谐振腔端面形状为凹球面时,具有聚焦声压幅值的作用;端面形状为凹发射端-凸反射端组合的谐振腔内声压幅值最高。以上结论为合理设计辐射板、谐振腔两端面组合形状提供了参考。  相似文献   

11.
A Josephson current through a half-metallic ferromagnet between two conventional superconductors is theoretically studied. The spin dynamics such as magnon excitation plays a crucial role not only for the conversion between spin-singlet and spin-triplet pairs but also for the formation of the composite state of a triplet Cooper pair and magnon, by which the Josephson current flows between the superconductors. We propose the supercurrent pumping driven by the coherent precession of the magnetization by tuning the microwave frequency to the ferromagnetic resonance frequency in a ferromagnetic Josephson junction.  相似文献   

12.
The cavity magnomechanical system has become a promising platform for preparing macroscopic quantum states. In this work, a scheme for generating the steady-state quadrature squeezing of the magnon and phonon modes in a cavity magnomechanical system is presented. This scheme uses a degenerate microwave parametric amplifier (PA) inside the microwave cavity. It is found that the squeezing of the cavity mode produced by the PA can be transferred to the magnon mode due to the cavity-magnon beamsplitter-like interaction, and the squeezing of the magnon mode can be further transferred to the phonon mode due to the magnon-phonon beamsplitter-like interaction induced by driving the magnon mode with a red-detuned microwave field. The effects of the parametric gain and phase of the PA, the magnon-cavity coupling strength, the power of the magnon drive, and the temperature of the environment on the squeezing of the magnon and phonon modes have been evaluated. The results show that the squeezing of the magnon and phonon modes is robust against the temperature of the environment.  相似文献   

13.
《Comptes Rendus Physique》2016,17(7):729-739
The techniques of microwave quantum optics are applied to collective spin excitations in a macroscopic sphere of a ferromagnetic insulator. We demonstrate, in the single-magnon limit, strong coupling between a magnetostatic mode in the sphere and a microwave cavity mode. Moreover, we introduce a superconducting qubit in the cavity and couple the qubit with the magnon excitation via the virtual photon excitation. We observe the magnon–vacuum-induced Rabi splitting. The hybrid quantum system enables generation and characterization of non-classical quantum states of magnons.  相似文献   

14.
Nonreciprocal microwave devices, in which the transmission of waves is non-symmetric between two ports, are indispensable for the manipulation of information processing and communication. In this work, we show the nonreciprocal microwave transmission in a cavity magnonic system under the joint mechanism of phase modulation and magnon Kerr nonlinearity effect. In contrast to the schemes based on the standard phase modulation or magnon Kerr nonlinearity, we find that the joint mechanism enables the nonreciprocal transmission even at low power and makes us obtain a high nonreciprocal isolation ratio. Moreover, when two microwave modes are coupled to the magnon mode via a different coupling strength, the presented strong nonreciprocal response occurs, and it makes the nonreciprocal transmission manipulating by the magnetic field within a large adjustable range possible, which overcomes narrow operating bandwidths. This study may provide promising opportunities to realize nonreciprocal structures for wave transmission.  相似文献   

15.
A new type of photonic crystals is proposed. The new crystals have a forbidden gap in the microwave spectrum of magnetostatic spin waves, and, by analogy with photonic crystals, they are called magnon crystals. Specimens of such crystals were fabricated on the basis of yttrium iron garnet films. The surfaces of ferromagnetic films containing two-dimensional etched hole structures were studied by atomic force and magnetic force mag-netometry. The propagation of spin waves through the magnon crystals was investigated.  相似文献   

16.
The parametric excitation of nuclear magnons by a microwave noise field was observed in an antiferromagnet. Two critical pumping amplitudes were found to exist. The first one corresponds to the onset of nonlinear microwave absorption. Above the second amplitude, strong phase correlations appear in a system of excited magnon pairs to form a nonequilibrium Bose condensate, which produces intense coherent electromagnetic radiation from the sample and gives rise to the coherent response of parametric magnons to the modulation of their spectrum (modulation response). It was found that, for the noise pumping, the contribution from the processes of elastic magnon relaxation to the threshold pumping amplitudes becomes nonadditive.  相似文献   

17.
The European Physical Journal D - In this paper, we study a system consisting of two spatially separated cavities, where each cavity contains a magnon mode of YIG sphere coupled to a microwave...  相似文献   

18.
This study presents nonreciprocal transmission and nonreciprocal magnon–phonon entanglement in a spinning microwave magnomechanical system. This system consists of microwave photons, magnon modes, and phonons. These are created by the vibrational mode of a yttrium iron garnet sphere. This investigation reveals that nonreciprocity is caused by the light that is circulating in a resonator that is experiencing a Fizeau shift. This leads to a difference in the effective detuning frequency of the photon for forwarding and backward drives. A super-strong transmission isolation rate (>100 dB) and a strong entanglement isolation rate (≈50 dB) are obtained by applying the experimental parameters. This scheme opens a new route for exploiting a variety of nonreciprocal effects, and it provides the theoretical basis for the design and realization of magnetically controllable isolators and diodes.  相似文献   

19.
20.
We condider the process of parametric resonance of magnons in magneto-ordered crystals in a microwave resonator. The nonlinear interaction of the resonator photons with the parametric magnon pairs is analysed theoretically, and the result expressed by the deviation frequencies relative to the pump frequency further demonstrates that the dynamics of resonator modes plays an important role once the pump power exceeds the threshold of parallel pumping.  相似文献   

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