Quantum information transfer between topological and spin qubit systems
We propose a method to coherently transfer quantum information, and to create entanglement, between topological qubits and conventional spin qubits. Our suggestion uses gated control to transfer an electron (spin qubit) between a quantum dot and edge Majorana modes in adjacent topological supercondu...
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Veröffentlicht in: | Physical review letters 2011-11, Vol.107 (21), p.210502-210502, Article 210502 |
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container_title | Physical review letters |
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creator | Leijnse, Martin Flensberg, Karsten |
description | We propose a method to coherently transfer quantum information, and to create entanglement, between topological qubits and conventional spin qubits. Our suggestion uses gated control to transfer an electron (spin qubit) between a quantum dot and edge Majorana modes in adjacent topological superconductors. Because of the spin polarization of the Majorana modes, the electron transfer translates spin superposition states into superposition states of the Majorana system, and vice versa. Furthermore, we show how a topological superconductor can be used to facilitate long-distance quantum information transfer and entanglement between spatially separated spin qubits. |
doi_str_mv | 10.1103/PhysRevLett.107.210502 |
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Our suggestion uses gated control to transfer an electron (spin qubit) between a quantum dot and edge Majorana modes in adjacent topological superconductors. Because of the spin polarization of the Majorana modes, the electron transfer translates spin superposition states into superposition states of the Majorana system, and vice versa. 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title | Quantum information transfer between topological and spin qubit systems |
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