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- W2065654689 abstract "An analogy between the band structure of narrow gap semiconductors and the Dirac equation for relativistic electrons in vacuum is used to demonstrate that semiconductor electrons experience a Zitterbewegung (trembling motion). Its frequency is $omega_Z approx {cal E}_g/hbar$ and its amplitude is $lambda_Z$, where $lambda_Z = hbar/m^*_0 u$ corresponds to the Compton wavelength in vacuum (${cal E}_g$ is the energy gap, $m^*_0$ is the effective mass and $u approx 1.3times10^8$ cm/sec). Once the electrons are described by a two-component spinor for a specific energy band there is no Zitterbewegung but the electrons should be treated as extended objects of size $lambda_Z$. Possible consequences of the above predictions are indicated." @default.
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- W2065654689 date "2005-08-19" @default.
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- W2065654689 title "Zitterbewegung and its effects on electrons in semiconductors" @default.
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- W2065654689 doi "https://doi.org/10.1103/physrevb.72.085217" @default.
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