Entanglement in a molecular three-qubit system
Abstract
We study the entanglement properties of a molecular three-qubit system described by the Heisenberg spin Hamiltonian with anisotropic exchange interactions and including an external magnetic field. The system exhibits first-order quantum phase transitions by tuning two parameters, x and y, of the Hamiltonian to specific values. The three-qubit chain is open-ended so that there are two types of pairwise entanglement: nearest-neighbour (nn) and next-nearest-neighbour (nnn). We calculate the ground and thermal state concurrences, quantifying pairwise entanglement, as a function of the parameters x, y and the temperature T. The entanglement threshold and gap temperatures are also determined as a function of the anisotropy parameter x. The results obtained are of relevance in understanding the entanglement features of the recently engineered molecular Cr(7)Ni-Cu(2+)-Cr(7)Ni complex which serves as a three-qubit system at sufficiently low temperatures.
URI
1. Full Text Link ->http://iopscience.iop.org/0953-8984/22/1/016004/
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2. Scopus : Citation Link ->
http://www.scopus.com/record/display.url?eid=2-s2.0-72149087241&origin=resultslist&sort=plf-f&src=s&st1=Entanglement+in+a+molecular+three-qubit+system&sid=C5FED4059220165A37B568E5C97C4FAC.Vdktg6RVtMfaQJ4pNTCQ%3a70&sot=b&sdt=b&sl=61&s=TITLE-ABS-KEY%28Entanglement+in+a+molecular+three-qubit+system%29&relpos=0&relpos=0&searchTerm=TITLE-ABS-KEY%28Entanglement+in+a+molecular+three-qubit+system%29
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- Prof. Indrani Bose [22]
