Author:
Singh Dileep,Gulati Vaishali,Arvind ,Dorai Kavita
Abstract
Abstract
We designed a quantum circuit to prepare a permutation-symmetric maximally entangled three-qubit state called the
state and experimentally created it on an NMR quantum processor. The presence of entanglement in the state was certified by computing two different entanglement measures, namely negativity and concurrence. We used the
state in conjunction with a set of maximally incompatible local measurements, to demonstrate the maximal violation of inequality number 26 in Sliwa's classification scheme, which is a tight Bell inequality for the (3, 2, 2) scenario, i.e., the three-party, two-measurement-settings and two-measurement-outcomes scenario.
Funder
Department of Science and Technology India
Subject
General Physics and Astronomy
Cited by
1 articles.
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1. Controlling NMR spin systems for quantum computation;Progress in Nuclear Magnetic Resonance Spectroscopy;2024-04