Off-resonant preservation and generation of imaginarity in distributed scenarios
arXiv:2601.10979 · doi:10.1103/3jkw-tmbj
Abstract
We study the nonlocal advantage of quantum imaginarity (NAQI) and distillable imaginarity of assistance (DIA), which treat imaginarity as a resource in distributed scenarios. For two qubits interacting with a lossy cavity, it is shown that both the NAQI and DIA can be well preserved for long times in the presence of large and symmetric detuning between the qubits and the cavity. Moreover, the off-resonant interaction generates a high degree of NAQI and DIA from the initial product states of two qubits having the same detunings and unequal couplings to the cavity. Based on the effective coupling of the qubits induced by the cavity mode, we explain the physical mechanism underlying the validity of this strategy. Our findings shed light on the role that off-resonant interactions have in the efficient control of imaginarity in distributed scenarios.
13 pages, 9 figures; Final version published in Phys. Rev. A
References in corpus (29)
- Coupling Superconducting Qubits via a Cavity Bus
- Non-Markovian effects on the dynamics of entanglement
- Coherent quantum state storage and transfer between two phase qubits via a resonant cavity
- Protecting entanglement via the quantum Zeno effect
- Sudden death and sudden birth of entanglement in common structured reservoirs
- Ultrahigh finesse Fabry-Perot superconducting resonator
- Quantum theory based on real numbers can be experimentally falsified
- Operational Resource Theory of Imaginarity
- Ruling out real-valued standard formalism of quantum theory
- Resource theory of imaginarity: Quantification and state conversion
- Hiding and masking quantum information in complex and real quantum mechanics
- Off-resonant entanglement generation in a lossy cavity
- Non-Markovian Decay of a Three Level Cascade Atom in a Structured Reservoir
- Real quantum operations and state transformations
- Imaginarity-free quantum multiparameter estimation
- Unitary-invariant witnesses of quantum imaginarity
- Resource Theory of Imaginarity: New Distributed Scenarios
- Imaginarity of Gaussian states
- Quantifying the imaginarity of quantum states via Tsallis relative entropy
- Nonlocal Advantages of Quantum Imaginarity
- Finite temperature reservoir engineering and entanglement dynamics
- Experimental entanglement characterization of two-rebit states
- Quantifying imaginarity in terms of pure-state imaginarity
- Imaginarity of quantum channels: Refinement and Alternative
- Coherence and imaginarity of quantum states
- Two imaginarity monotones induced by unified -relative entropy
- Quantifying the imaginarity via different distance measures
- Quantum-imaginarity-based quantum speed limit
- Flexible Readout and Unconditional Reset for Superconducting Multi-Qubit Processors with Tunable Purcell Filters