Quantum coherence of strongly correlated defects in spin chains

被引:2
|
作者
Bertaina, Sylvain [1 ]
Dutoit, Charles-Emmanuel [1 ]
Van Tol, Johan [2 ]
Dressel, Martin [3 ]
Barbara, Bernard [4 ]
Stepanov, Anatoli [1 ]
机构
[1] Aix Marseille Univ, CNRS, IM2NP UMR7334, F-13397 Marseille 20, France
[2] FSU, NHMFL, Tallahassee, FL 32310 USA
[3] Univ Stuttgart, Phys Inst, D-70550 Stuttgart, Germany
[4] Inst NEEL, CNRS, F-38042 Grenoble, France
关键词
Quantum coherence; EPR; strongly correlated magnet; QUBITS; ENTANGLEMENT; TEMPERATURE; ELECTRON; DYNAMICS; SYSTEMS; STATE;
D O I
10.1016/j.phpro.2015.12.004
中图分类号
O59 [应用物理学];
学科分类号
摘要
Most of qubit systems known to date are isolated paramagnetic centres in magnetically diluted samples since their dilution allows to considerably weaken the dipole-dipole inter-qubit interaction and thus to prevent the decoherence. Here we suggest an alternative approach for spin qubits which are built on spin S = 1/2 defects in magnetically concentrated strongly correlated systems - spin chains. The corresponding qubits are made of spin solitons resulting from local breaking of transitional symmetry associated with point-defects. We provide the first evidence for coherence and Rabi oscillations of spin solitons in isotropic Heisenberg chains, simple antiferromagnetic-Neel or spin-Peierls, proving that they can be manipulated as single spin S = 1/2. The entanglement of these many-body soliton states over macroscopic distances along chains gives rise to networks of coupled qubits which could easily be decoupled at will in extensions of this work.
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页码:23 / 28
页数:6
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