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- W2016038282 abstract "Collective excitation spectra of three- , two- , and one-dimensional electron systems are deduced theoretically in detail on the basis of random phase approximation in the one subband occupancy limit. The theoretical results show that the plasma energy of the three-dimensional electron gas (3DEG), ω(q), starts from a large value even at q=0, while the plasma energy of the two-dimensional electron gas (2DEG) and one-dimensional (1D) quantum wires start from zero. In contrast to the corresponding plasmon of 3DEG and 2DEG, the dispersion relation of lD plasmon exhibits a logarithmic dispersion at small wave vectors and the characteristic size of the wire appears in the formula. The numerical results show that the wave vector- and energy regions where the 1D plasmons can long exist are much wider than those of 3D and 2D plasmons. This suggests that the collective excitations may play a more important role on the electron transport properties in 1D quantum wires than in 2D and 3D electron systems." @default.
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- W2016038282 date "2001-11-01" @default.
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- W2016038282 title "Comparison of the collective excitation spectra of three- , two- and one-dimensional electron systems" @default.
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- W2016038282 doi "https://doi.org/10.1016/s0921-4526(01)00596-8" @default.
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