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arxiv: 1307.7728 · v2 · pith:L5CENLC5new · submitted 2013-07-29 · ❄️ cond-mat.mes-hall · cond-mat.str-el· hep-ph· nucl-th

Supercritical instability in graphene with two charged impurities

classification ❄️ cond-mat.mes-hall cond-mat.str-elhep-phnucl-th
keywords distancecriticalimpuritieschargedsupercriticalelectronenergygraphene
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We study the supercritical instability in gapped graphene with two charged impurities separated by distance R using the two-dimensional Dirac equation for electron quasiparticles. Attention is paid to a situation when charges of impurities are subcritical, whereas their total charge exceeds a critical one. The critical distance R_{cr} in the system of two charged centers is defined as that at which the electron bound state with the lowest energy reaches the boundary of the lower continuum. A variational calculation of the critical distance R_{cr} separating the supercritical (R<R_{cr}) and subcritical (R>R_{cr}) regimes is carried out. It is shown that the critical distance R_{cr} increases as the quasiparticle gap decreases. The energy and width of a quasistationary state as functions of the distance between two impurities are derived in the quasiclassical approximation.

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