Inelastic low-temperature transport through a quantum dot with a Mn ion |
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Authors: | Peng-Bin Niu Hui Yao Zhi-Jian Li Yi-Hang Nie |
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Affiliation: | 1. Institute of Theoretical Physics, Shanxi University, Taiyuan 030006, China;2. Institute of Solid State Physics, Shanxi Datong University, Datong 037009, China |
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Abstract: | Using the nonequilibrium Hubbard operator Green's function technique, we study the inelastic low-temperature quantum transport through an artificial single-molecule magnet coupled to a single phonon mode. For a minimal model based on CdTe quantum dot doped with a single Mn2+ ion (S=5/2), the calculated results show that in the presence of hole–phonon coupling, in addition to main Kondo-like peaks associated with (2S+1) sublevels of spin pair states, satellite Kondo-like peaks originating from emitting phonons appear in the local density of states and differential conductance. Moreover, the number of these phonon-induced Kondo-like peaks depends on the parity of the local large spin, i.e., S=integer or half-integer. It is expected that the intrinsic properties of artificial single-molecule magnets can be obtained by detecting these transport characteristics. |
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Keywords: | Inelastic transport Artificial single-molecule magnet Hubbard Green's function approach Low-temperature transport |
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