arXiv · 1504.04856
Experimental construction of a W-superposition state and its equivalence to the GHZ state under local filtration
Abstract
We experimentally construct a novel three-qubit entangled W-superposition ($\rm W \bar{\rm W}$) state on an NMR quantum information processor. We give a measurement-based filtration protocol for the invertible local operation (ILO) that converts the $\rm W \bar{\rm W}$ state to the GHZ state, using a register of three ancilla qubits. Further we implement an experimental protocol to reconstruct full information about the three-party $\rm W \bar{\rm W}$ state using only two-party reduced density matrices. An intriguing fact unearthed recently is that the $\rm W \bar{\rm W}$ state which is equivalent to the GHZ state under ILO, is in fact reconstructible from its two-party reduced density matrices, unlike the GHZ state. We hence demonstrate that although the $\rm W \bar{\rm W}$ state is interconvertible with the GHZ state, it stores entanglement very differently.
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Debmalya Das, Shruti Dogra, Kavita Dorai, Arvind. 2015-04-19. Experimental construction of a W-superposition state and its equivalence to the GHZ state under local filtration. https://doi.org/10.1103/physreva.92.022307
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