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Spin-selective Peierls transition in interacting one-dimensional conductors with spin-orbit interaction

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arxiv 1004.0467 v2 pith:UHZCU7UQ submitted 2010-04-03 cond-mat.mes-hall cond-mat.str-el

Spin-selective Peierls transition in interacting one-dimensional conductors with spin-orbit interaction

classification cond-mat.mes-hall cond-mat.str-el
keywords spin-orbittransitioninteractionsconductorsinteractingmagneticmodesone-dimensional
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Interacting one-dimensional conductors with Rashba spin-orbit coupling are shown to exhibit a spin-selective Peierls-type transition into a mixed spin-charge-density-wave state. The transition leads to a gap for one-half of the conducting modes, which is strongly enhanced by electron-electron interactions. The other half of the modes remains in a strongly renormalized gapless state and conducts opposite spins in opposite directions, thus providing a perfect spin filter. The transition is driven by magnetic field and by spin-orbit interactions. As an example we show for semiconducting quantum wires and carbon nanotubes that the gap induced by weak magnetic fields or intrinsic spin-orbit interactions can get renormalized by 1 order of magnitude up to 10 - 30 K.

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