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Quantum signature of exciton condensation
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Exciton condensation, a Bose-Einstein-like condensation of excitons, was recently reported in an electronic double layer (EDL) of graphene. We show that a universal quantum signature for exciton condensation can be used to both identity and quantify exciton condensation in molecular systems from direct calculations of the two-electron reduced density matrix. Computed large eigenvalues in the particle-hole reduced-density matrices of pentacene and hexacene EDLs reveal the beginnings of condensation, suggesting the potential for exciton condensation in smaller scale molecular EDLs.
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Measures with specified support and arbitrary Assouad dimensions
For every compact set E in the real line with dim_A E > 0, there exist measures supported on E with any prescribed upper Assouad dimension D > dim_A E, and for any d < dim_L E, a measure with lower Assouad dimension d.
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