Back to Search Start Over

Spin-Lattice Relaxation Decoherence Suppression in Vanishing Orbital Angular Momentum Qubits

Source :
Buch , C D , Kundu , K , Marbey , J J , van Tol , J , Weihe , H , Hill , S & Piligkos , S 2022 , ' Spin-Lattice Relaxation Decoherence Suppression in Vanishing Orbital Angular Momentum Qubits ' , Journal of the American Chemical Society , vol. 144 , no. 38 , pp. 17597–17603 .
Publication Year :
2022

Abstract

Multifrequency electron paramagnetic resonance spectroscopy on oriented single crystals of magnetically dilute Gd(III) ions in Gd0.004Y0.996(trensal) is used to determine the Hamiltonian parameters of the ground (8)S(7/2 )term and its phase memory time, T-m, characterizing its coherent spin dynamics. The vanishing orbital angular momentum of the S-8(7/2) term makes it relatively insensitive to spin-lattice relaxation mediated by magnetoelastic coupling and leads to a T-m of 12 mu s at 3 K, which is not limited by spin-lattice relaxation.

Details

Database :
OAIster
Journal :
Buch , C D , Kundu , K , Marbey , J J , van Tol , J , Weihe , H , Hill , S & Piligkos , S 2022 , ' Spin-Lattice Relaxation Decoherence Suppression in Vanishing Orbital Angular Momentum Qubits ' , Journal of the American Chemical Society , vol. 144 , no. 38 , pp. 17597–17603 .
Notes :
Buch, Christian D., Kundu, Krishnendu, Marbey, Jonathan J., van Tol, Johan, Weihe, Hogni, Hill, Stephen, Piligkos, Stergios
Publication Type :
Electronic Resource
Accession number :
edsoai.on1349074537
Document Type :
Electronic Resource