A quantum fluctuation description of charge qubits

Author:

Benatti FORCID,Carollo F,Floreanini R,Narnhofer HORCID,Valiera F

Abstract

Abstract We consider a specific instance of a superconducting circuit, the so-called charge-qubit, consisting of a capacitor and a Josephson junction that we describe by means of the BCS microscopic model in terms of two tunnelling superconducting systems in the strong-coupling quasi-spin formulation. Then, by means of collective observables we derive the Hamiltonian governing the quantum behaviour of the circuit in the limit of a large number N of quasi-spins. Our approach relies on suitable quantum fluctuations, i.e. on collective quasi-spin operators, different from mean-field observables, that retain a quantum character in the large-N limit. These collective operators generate the Heisenberg algebra on the circle and we show that their dynamics reproduces the phenomenological one generated by the charge qubit Hamiltonian obtained by quantizing the macroscopic classical Hamiltonian of the circuit. The microscopic derivation of the emergent, large-N behaviour provides a rigorous setting to investigate more in detail both general quantum circuits and quantum macroscopic scenarios; in particular, in the specific case of charge-qubits, it allows to explicitly obtain the temperature dependence of the critical Josephson current in the strong coupling regime, a result not accessible using standard approximation techniques.

Funder

Deutsche Forschungsgemeinschaft

European Union’s Horizon Europe research and innovation program

PNRR MUR project

Research Unit FOR 5413/1

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference44 articles.

1. Superconducting quantum bit based on the Cooper pair box;Vion,2003

2. Quantum bits with Josephson junctions (Review Article)

3. Circuit QED: superconducting qubits coupled to microwave photons;Girvin,2014

4. Introduction to quantum electromagnetic circuits

5. Quantum information processing with superconducting circuits: a review

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