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High-frequency vortex ratchet effect in a superconducting film with a nanoengineered array of asymmetric pinning sites

机译:具有不对称钉扎点的纳米工程阵列的超导膜中的高频涡旋棘轮效应

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摘要

Vortex ratchet effect is investigated experimentally in the frequency range between 0.5 MHz and 2 GHz. The ratchet potential is provided by an array of about a quarter of a million nanoengineered asymmetric antidots in a Pb film. A square vortex lattice is stabilized at the first matching field, when each asymmetric antidot is occupied by a single vortex. We have found that (1) the transition from adiabatic to nonadiabatic cases occurring at about 1 MHz, above which the ratchet windows shift upwards with the applied frequency due to the fact that the time for a vortex to escape from the pinning potential is comparable to the period of the applied rf driving current I_(rf) (2) a sudden V_(dc) reversal at large I_(rf), which can be attributed to inertia effect; (3) the collective step-motor behavior in the MHz region, i.e., the vortex lattice moves forward by an integer number of the period of pinning array at each cycle of I_(rf); and (4) very weak ratchet effect at several GHz, indicating the possibility of stronger inertia effects in the vortex motion at such high frequencies. These results reveal rich physics information in the nonadiabatic ratchet system and are of particular importance for particle separation and molecular motor in biology.
机译:在0.5 MHz至2 GHz的频率范围内,对涡旋棘轮效应进行了实验研究。棘轮电位是由Pb膜中大约四分之一的纳米工程非对称解毒剂阵列提供的。当每个非对称解毒点被单个涡旋占据时,方涡旋晶格在第一匹配场处稳定。我们发现(1)从绝热情况到非绝热情况的转变发生在大约1 MHz,在该频率之上,棘轮窗随着施加的频率向上移动,这是由于涡旋脱离钉扎电位的时间与施加的rf驱动电流I_(rf)的周期(2)在大的I_(rf)处突然发生V_(dc)反转,这可归因于惯性效应; (3)在MHz区域中的集体步进电动机行为,即,在每个I_(rf)周期,涡旋晶格向前移动钉扎阵列的周期的整数倍; (4)在几个GHz处的棘轮效应非常弱,这表明在如此高的频率下,涡旋运动可能会产生更强的惯性效应。这些结果揭示了非绝热棘轮系统中丰富的物理信息,对于生物学中的颗粒分离和分子运动特别重要。

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  • 来源
    《Physical review》 |2010年第17期|P.174505.1-174505.7|共7页
  • 作者单位

    Institute for Nanoscale Physics and Chemistry (INPAC), Katholieke Universiteit Leuven, Celestijnenlaan 200D, B-3001 Leuven, Belgium Research Institute of Superconductor Electronics (RISE), School of Electronic Science and Engineering, Nanjing University, Nanjing 210093, China;

    rnNational Laboratory for Superconductivity, Institute of Physics, Beijing National Laboratory for Condensed Matter Physics, Chinese Academy of Sciences, Beijing 100190, China;

    rnInstitut fuer Bio-und Nanosysteme, Bioelektronik (IBN-2), Foschungszentrum Juelich, D-52425 Juelich, Germany;

    rnDepartamento de Fisica, Universidade Federal de Pernambuco, 50670-901 Recife, PE, Brazil;

    rnResearch Institute of Superconductor Electronics (RISE), School of Electronic Science and Engineering, Nanjing University, Nanjing 210093, China;

    rnInstitute for Nanoscale Physics and Chemistry (INPAC), Katholieke Universiteit Leuven, Celestijnenlaan 200D, B-3001 Leuven, Belgium;

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  • 正文语种 eng
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  • 关键词

    superconducting devices; mesoscopic and nanoscale systems; properties of type Ⅰand type Ⅱsuperconductors; fluctuation phenomena, random processes, noise, and brownian motion;

    机译:超导装置;介观和纳米系统;Ⅰ型和Ⅱ型超导体的性能;波动现象;随机过程;噪声和布朗运动;

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