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Nonlinear current response and electric quantum oscillations in the Dirac semimetal Cd_(3)As_(2)
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作者 崔浩楠 吴泽南 +7 位作者 王建坤 祝光宇 杨佳洁 郑文壮 廖志敏 王硕 林本川 俞大鹏 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第8期104-108,共5页
Chiral anomaly is a distinct quantum anomaly associated with chiral fermions in Dirac or Weyl semimetals.The use of negative magnetoresistance(negative MR)as a signature for this anomaly remains contentious,as trivial... Chiral anomaly is a distinct quantum anomaly associated with chiral fermions in Dirac or Weyl semimetals.The use of negative magnetoresistance(negative MR)as a signature for this anomaly remains contentious,as trivial mechanisms such as current jetting and weak localization can also induce negative MR.In this study,we report a novel nonlinear behavior of the chiral anomaly in the longitudinal direction,which we observed by applying parallel current and magnetic field to the Dirac semimetal Cd_(3)A_(s_(2)).This nonlinear characteristic peaks at an intermediate magnetic field of approximately5 T,displaying a resistance-increasing property concomitant with strengthening of the current source.Through angledependence experiments,we were able to rule out trivial factors,such as thermal effects,geometric artifacts,and anisotropy.Furthermore,additional electric quantum oscillations were observed when the direct current(DC)was applied as high as300μA.Such an unusual phenomenon is ascribed to the formation of quantized levels due to Bloch oscillation in the high DC regime,suggesting that an oscillatory density distribution may arise as the electric field increases.The non-Ohmic electric quantum oscillations open a new avenue for exploring chiral anomaly and other nontrivial topological properties,which is also one of the salient features of nonequilibrium steady states in condensed matter physics. 展开更多
关键词 nonlinear response electric quantum oscillations chiral anomaly topological semimetals
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Molecular modeling of oscillating GHz electric field influence on the kinesin affinity to microtubule
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作者 H.R.Saeidi S.S.Setayandeh A.Lohrasebi 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第8期239-242,共4页
Kinesin is a microtubule-associated motor protein which can respond to the external electric field due to its polarity.Using a molecular dynamics simulation method, the effect of such a field on the affinity of kinesi... Kinesin is a microtubule-associated motor protein which can respond to the external electric field due to its polarity.Using a molecular dynamics simulation method, the effect of such a field on the affinity of kinesin to the α β-tubulin is investigated in this study. To consider kinesin affinity, the system is exposed to an electric field of 0.03 V/nm with frequency values of 1, 2,..., 9, and 10 GHz. It is found that the applied electric field can change kinesin affinity to the microtubule.These changes could perturb the normal operation of kinesin, such as the processive motility of kinesin on the microtubule. 展开更多
关键词 kinesin affinity oscillating electric field molecular dynamic αβ-tubulin dimer
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Photodetachment dynamics of H^- ion in a harmonic potential plus a time-dependent oscillating electric field
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作者 王德华 王传娟 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第10期181-188,共8页
The photodetachment dynamics of H^- ion in a harmonic potential plus an oscillating electric field is studied using the time-dependent closed orbit theory. An analytical formula for calculating the photodetachment cro... The photodetachment dynamics of H^- ion in a harmonic potential plus an oscillating electric field is studied using the time-dependent closed orbit theory. An analytical formula for calculating the photodetachment cross section of this system is put forward. It is found that the photodetachment cross section of this system is nearly unaffected for the weak oscillating electric field strength, but oscillates complicatedly when the oscillating electric field strength turns strong. In addition, the frequency of the harmonic potential and the oscillating electric field (the frequency of the harmonic potential and the frequency of the oscillating electric field are the same in the paper, unless otherwise stated.) can also affect the photodetachment dynamics of this system. With the increase of the frequency in the harmonic potential and the oscillating electric field, the number of the closed orbits for the detached electrons increased, which makes the oscillatory structure in the photodetachment cross section much more complex. Our study presents an intuitive understanding of the photodetachment dynamics driven by a harmonic potential plus an oscillating electric field from a space and time dependent viewpoint. This study is very useful in guiding the future experimental research for the photodetachment dynamics in the electric field both changing with space and time. 展开更多
关键词 harmonic potential oscillating electric field time-dependent closed orbit theory photodetachment dynamics
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Temporal interference driven by an oscillating electric field in photodetachment of H^- ion
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作者 王德华 李梦芝 +1 位作者 宋鸿娜 任笑笑 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第2期314-320,共7页
The real time domain interferometry for the photodetachment dynamics driven by the oscillating electric field has been studied for the first time. Both the geometry of the detached electron trajectories and the electr... The real time domain interferometry for the photodetachment dynamics driven by the oscillating electric field has been studied for the first time. Both the geometry of the detached electron trajectories and the electron probability density are shown to be different from those in the photodetachment dynamics in a static electric field. The influence of the oscillating electric field on the detached electron leads to a surprisingly intricate shape of the electron waves, and multiple interfering trajectories generate complex interference patterns in the electron probability density. Using the semiclassical open-orbit theory, we calculate the interference patterns in the time-dependent electron probability density for different electric field strengths, different frequencies and phases in the oscillating electric field. This method is universal, and can be extended to study the photoionization dynamics of the atoms in the time-dependent electric field. Our study can guide the future experimental researches in the photodetachment or photoionization microscopy of negative ions and atoms in the oscillating electric field. 展开更多
关键词 temporal interference photodetachment dynamics oscillating electric field semiclassical open-orbit theory
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