Quantum coherence resourced by the strong nuclear quadrupolar interaction

We propose a setup for studying the quantum coherence properties of a quadrupolar nucleus using the nuclear magnetic resonance platforms We consider powder samples labeled with 23 Na and oriented with respect to the static magnetic field. By using the l 1 -norm of coherence, we examine the quantum c...

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Veröffentlicht in:Physica scripta 2023-10, Vol.98 (10), p.105110
Hauptverfasser: Çakmak, Selçuk, Gençten, Azmi, Altintas, Ferdi
Format: Artikel
Sprache:eng
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Zusammenfassung:We propose a setup for studying the quantum coherence properties of a quadrupolar nucleus using the nuclear magnetic resonance platforms We consider powder samples labeled with 23 Na and oriented with respect to the static magnetic field. By using the l 1 -norm of coherence, we examine the quantum coherence in the Zeeman basis at thermal equilibrium. Non-zero coherence is found to result from the strong nuclear quadrupolar spin interactions. It is also shown that higher coherence is created as the quadrupolar interaction coefficient increases. We also discuss the stability of coherence in a possible measurement process in order to use it as a potential resource in any quantum computation protocol.
ISSN:0031-8949
1402-4896
DOI:10.1088/1402-4896/acfa46