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1.
金刚石中单个氮空位中心的电子自旋在激光辐射下能够发出近红外的光致荧光,增加微波辐射可以对其进行量子调控,是室温条件下实现量子计算机的主要介质之一.本文利用激光共聚焦扫描显微系统观测到了金刚石晶体中氮空位中心的荧光二维扫描图,并通过二次相关函数测量验证了氮空位中心是单光子源.改变微波辐射频率得到了电子自旋共振谱,从而实现了对单个氮空位中心的量子调控.利用设计的可控静磁场研究了氮空位中心在不同磁场方向和大小时的光致荧光特性和自旋共振峰.实验结果表明两个电子自旋共振峰间的频率间距与静磁场的旋转角度成余弦函数关系,与理论分析结果一致.  相似文献   

2.
应用了电子自旋共振技术来研究有机半导体1,1-二苯基-2-三硝基苯肼(DPPH)中自由基未成对电子的超精细结构和塞曼劈裂.通过测量共振磁场大小和微波频率,我们得到了自由基未成对电子的朗德g因子.在实验中,一种混合接头(magic-T)波导管被用来提高信噪比.朗德g因子的测量结果为2.033±0.0003,与其他实验中测得的期望值2.0036相吻合.这个方法可以用以研究各种材料、生物系统中自由基未成对电子,并可进一步应用于研究电子芯片微电感上的自由基.  相似文献   

3.
详细分析了微波段用可调反射式谐振腔做电子自旋共振实验中共振信号的形成原理,分析指出下凹和上凸波形都为共振吸收信号,当波形的上下两部分等大时,为色散信号,波形的上下两部分不等大时,为色散信号和共振吸收信号的合成。从理论上解释了共振信号的变化所反映的物理过程。  相似文献   

4.
当电子自旋共振发生在微波段时,根据微波段电子自旋共振条件,并使用电子顺磁共振谱仪和微波元件(波导管、谐振腔、短路活塞、环行器)等实验仪器测量出微波的波导波长,可以计算出真空中微波的波长.利用特斯拉计测量出共振时的磁感应强度,从而计算出了电磁波的传播速度.  相似文献   

5.
刘竹琴 《大学物理》2012,31(6):37-40
利用射频段电子自旋共振实验仪,采用恒定磁场正、反向时共振信号等间距及共振条件,精确地测量了延安地区的地磁场强度及磁倾角.  相似文献   

6.
李睿 《物理学报》2015,64(16):167303-167303
半导体量子点中的电子自旋具有较长相干时间以及可扩展性的特点, 在近十几年来引起了人们的广泛兴趣. 人们常常利用电子自旋共振技术来对单个自旋进行操纵. 这样不但需要一个静磁场来使电子产生赛曼劈裂, 同时还需要一个与之垂直的局域振荡磁场. 但是, 在实验上产生足够强且具有固定频率的局域磁场是比较困难的. 后来人们发现, 局域的振荡电场也可以操纵单个电子自旋, 也就是所谓的电偶极自旋共振. 众所周知, 自旋只有自旋磁矩, 不会与电场有任何直接的相互作用. 所以, 电偶极自旋共振的发生必须依赖于某些媒质. 这些媒质包括:量子点材料中的自旋轨道耦合作用, 量子点中的局域磁场梯度, 以及量子点中电子自旋与核自旋的超精细相互作用. 这些媒质能诱导出自旋与电场之间间接的相互作用, 从而外电场操纵单个电子自旋得以实现. 本文总结归纳了目前半导体量子点系统中发生电偶极自旋共振的三种主要物理机理.  相似文献   

7.
描述了一种原创的紧凑型电子自旋共振(ESR)仪.该仪器具备高性能、低成本、简单可靠、结构紧凑、开放构架、多功能模块等一系列特点.分析了ESR谱仪的多个微波单位,研发并通过实验验证了自差ESR谱仪的最优双腔结构,并设计了一种可提供高均匀磁场的电、永磁混合磁体.最后介绍了这种新型紧凑型电子自旋共振仪的主要参数和应用.  相似文献   

8.
在光磁共振实验中,常常有抽运信号与共振信号同时存在的情况,这严重影响到实验的观察和测量.本文利用扫场及水平场大小对抽运信号的影响,通过理论分析和实验测量得到抽运和共振信号不同时存在时扫场和水平场的取值关系.从而有效避免抽运信号对共振信号的干扰,以及对总磁场方向误判的情况,保证了实验的顺利进行和准确测量.  相似文献   

9.
电子自旋共振中的g因子   总被引:1,自引:1,他引:0  
翁斯灏 《物理实验》1992,12(5):238-240
凡具有未偶电子的物质,都可作为电子自旋共振的研究对象,将其置于恒定磁场(?)中时,会引起因电子自旋体系与外磁场相互作用所产生的塞曼(Zeeman)能级分裂,如果在垂直外磁场(?)方向上再加一频率为V的电磁辐射线偏振磁场(起作用的是它的右旋圆偏振分量),当满足hv=gμ_BB时,就会发生塞曼能级间的共振吸收(和辐射)现象,这就是电子顺磁共振(EPR)。理论和实验  相似文献   

10.
在本刊1980年第2期上,我们介绍了在微波频率范围内,进行电子自旋共振实验的装置。在该装置中,使用了固定式的矩形谐振腔。由于采用H_(016)场型,腔长约13.4cm,在谐振时,微波频率总是9320MHz。由于有机自由基DPPH中自由电子的Lande因子g值为2.0036,为了满足磁共振条件hγ=gβH,所以总是在静磁  相似文献   

11.
Direct electron spin resonance (ESR) on a high mobility two-dimensional electron gas in a single AlAs quantum well reveals an electronic g factor of 1.991 at 9.35 GHz and 1.989 at 34 GHz with a minimum linewidth of 7 G. The ESR amplitude and its temperature dependence suggest that the signal originates from the effective magnetic field caused by the spin-orbit interaction and a modulation of the electron wave vector caused by the microwave electric field. This contrasts markedly with conventional ESR that detects through the microwave magnetic field.  相似文献   

12.
We have demonstrated a combination of frequency comb spin-echo protocol in a conventional microwave pulsed electron spin resonance spectrometer with gradient pulses of the external magnetic field applied for on-demand retrieval of signal microwave pulses at the required moments of time. A natural high-finesse periodic structure was used as a carrier of stored information. The structure is made out of hyperfine lines of electron spin resonance of tetracyanoethylene anion radicals in toluene at room temperature. Herein, we have also observed that using the pulses of gradient magnetic field can increase the memory capacity. The experimental results demonstrated promising opportunities for controlling electron nuclear spin coherence, which could be useful for implementation of broadband microwave or optical-microwave noise free quantum memory protocols.  相似文献   

13.
We demonstrate optically detected spin resonance of a single electron confined to a self-assembled quantum dot. The dot is rendered dark by resonant optical pumping of the spin with a laser. Contrast is restored by applying a radio frequency (rf) magnetic field at the spin resonance. The scheme is sensitive even to rf fields of just a few microT. In one case, the spin resonance behaves as a driven 3-level lambda system with weak damping; in another one, the dot exhibits remarkably strong (67% signal recovery) and narrow (0.34 MHz) spin resonances with fluctuating resonant positions, evidence of unusual dynamic processes.  相似文献   

14.
Enhanced EPR sensitivity from a ferroelectric cavity insert.   总被引:3,自引:0,他引:3  
We report the development of a simple ferroelectric cavity insert that increases the electron paramagnetic resonance (EPR) sensitivity by an order of magnitude when a sample is placed within it. The insert is a hollow cylinder (length 4.8 mm, outside diameter 1.7 mm, inside diameter 0.6 mm) made from a single crystal of KTaO(3), which has a dielectric constant of 230 at X-band (9.5 GHz). Its outside dimensions were chosen to produce a resonant frequency in the X-band range, based on electromagnetic field modeling calculations. The insert increases the microwave magnetic field (H(1)) at the center of the insert by a factor of 7.4 when placed in an X-band TM(110) cavity. This increases the EPR signal for a small (volume 0.13 microL) unsaturated nitroxide spin label sample by a factor of 64 at constant microwave power, and by a factor of 9.8 at constant H(1). The insert does not significantly affect the cavity quality factor Q, indicating that this device simply redistributes the microwave fields within the cavity, focusing H(1) onto the sample inside the insert, thus increasing the filling factor. A similar signal enhancement is obtained in the TM(110) and TE(102) cavities, and when the insert is oriented either vertically (parallel to the microwave field) or horizontally (parallel to the DC magnetic field) in the TM(110) cavity. This order-of-magnitude sensitivity enhancement allows EPR spectroscopy to be performed in conventional high-Q cavities on small EPR samples previously only measurable in loop-gap or dielectric resonators. This is of particular importance for small samples of spin-labeled biomolecules.  相似文献   

15.
We have measured the electrically detected magnetic resonance of donor-doped silicon field-effect transistors in resonant X- (9.7 GHz) and W-band (94 GHz) microwave cavities. The two-dimensional electron gas resonance signal increases by 2 orders of magnitude from X to W band, while the donor resonance signals are enhanced by over 1 order of magnitude. Bolometric effects and spin-dependent scattering are inconsistent with the observations. We propose that polarization transfer from the donor to the two-dimensional electron gas is the main mechanism giving rise to the spin resonance signals.  相似文献   

16.
基于压电陶瓷精密微位移系统的扫描探测技术是目前精密测量仪器进行微纳区域/结构性能测试的核心系统,但压电陶瓷材料存在迟滞、非线性问题,限制了对微位移分辨能力的提升.本文以金刚石氮空位色心为敏感单元,利用电子自旋效应对磁场强度的高分辨敏感机理,结合永磁体周围不同位置对应的磁场强度变化关系,提出了一种基于金刚石氮空位色心电子自旋敏感机理的微位移检测方法.通过建立电子自旋效应与微位移的关联模型,搭建了相应的微位移测量系统.经实验验证,该系统对微位移测试的灵敏度为16.67 V/mm,检测分辨率达到60 nm,实现了对微位移的高分辨率测量.并通过理论分析,该系统的微位移测量分辨率可进一步提升至亚纳米级水平,为新型微位移测量技术提供了发展方向和研究思路.  相似文献   

17.
18.
Spin-dependent changes in the noise power of undoped amorphous hydrogenated silicon ( a-Si:H) are observed under electron spin resonance conditions. The noise-detected magnetic resonance (NDMR) signal has the g value of holes in the valence band tail of a-Si:H. Both the sign of the NDMR signal and the frequency dependence of its intensity can be quantitatively accounted for by a resonant reduction of the generation-recombination noise time constant tau. This identifies hopping in the valence-band tail as the dominant spin-dependent step governing noise in this material.  相似文献   

19.
We analyze the transport through asymmetric double quantum dots with an inhomogeneous Zeeman splitting in the presence of crossed dc and ac magnetic fields.A strong spin-polarized current can be obtained by changing the dc magnetic field.It is mainly due to the resonant tunnelling.But for the ferromagnetic right electrode,the electron spin resonance also plays an important role in transport.We show that the double quantum dots with three-level mixing under crossed dc and ac magnetic fields can act not only as a bipolar spin filter but also as a spin inverter under suitable conditions.  相似文献   

20.
采用时间分辨椭圆偏振光抽运-探测光谱研究磁场作用下本征GaAs中电子自旋弛豫动力学,观察到吸收量子拍现象.这种吸收量子拍起源于电子自旋的拉莫尔进动,因而其拍频成为高精度测量电子g因子的一种新方法.利用这种新方法研究了本征GaAs中电子g因子的温度和能量依赖特性,发现g因子随电子的温度和能量增加而增加,但与k·p理论预测相差甚大.基于实验结果拟合,我们给出了一个g因子的温度和能量依赖的经验公式. 关键词: 椭圆偏振光抽运-探测光谱 自旋量子拍 g因子 GaAs  相似文献   

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