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Trapped Ion Quantum Computing
Superconducting Qubits
Quantum Simulation
Quantum Chemistry
Dispersive readout of molecular spin qudits
arXiv
Authors: Álvaro Gómez-León, Fernando Luis, David Zueco
Year
2021
Paper ID
61125
Status
Preprint
Abstract Read
~2 min
Abstract Words
122
Citations
N/A
Abstract
We study the physics of a magnetic molecule described by a "giant" spin with multiple (d > 2) spin states interacting with the quantized cavity field produced by a superconducting resonator. By means of the input-output formalism, we derive an expression for the output modes in the dispersive regime of operation. It includes the effect of magnetic anisotropy, which makes different spin transitions addressable. We find that the measurement of the cavity transmission allows to uniquely determine the spin state of the qudits. We discuss, from an effective Hamiltonian perspective, the conditions under which the qudit read-out is a non-demolition measurement and consider possible experimental protocols to perform it. Finally, we illustrate our results with simulations performed for realistic models of existing magnetic molecules.
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- We study the physics of a magnetic molecule described by a "giant" spin with multiple (d > 2) spin states interacting with the quantized cavity field produced by a...
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