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- W2996508712 abstract "We use co-tunneling spectroscopy to investigate spin-, orbital-, and spin-orbital Kondo transport in a strongly confined system of InAs double quantum dots (QDs) parallel-coupled to source and drain. In the one-electron transport regime, the higher symmetry spin-orbital Kondo effect manifests at orbital degeneracy and no external magnetic field. We then proceed to show that the individual Kondo contributions can be isolated and studied separately; either by orbital detuning in the case of spin-Kondo transport, or by spin splitting in the case of orbital Kondo transport. By varying the inter-dot tunnel coupling, we show that lifting of the spin degeneracy is key to confirming the presence of an orbital degeneracy, and to detecting a small orbital hybridization gap. Finally, in the two-electron regime, we show that the presence of a spin-triplet ground state results in spin-Kondo transport at zero magnetic field." @default.
- W2996508712 created "2019-12-26" @default.
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- W2996508712 date "2020-03-30" @default.
- W2996508712 modified "2023-09-26" @default.
- W2996508712 title "Selective tuning of spin-orbital Kondo contributions in parallel-coupled quantum dots" @default.
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- W2996508712 doi "https://doi.org/10.1103/physrevb.101.115429" @default.
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