Accelerating multipartite entanglement generation in non-Hermitian superconducting qubits
arXiv:2409.03414 · doi:10.1088/2058-9565/adafd9
Abstract
Open quantum systems are susceptible to losses in information, energy, and particles due to their surrounding environment. One novel strategy to mitigate these losses is to transform them into advantages for quantum technologies through tailored non-Hermitian quantum systems. In this work, we theoretically propose a fast generation of multipartite entanglement in non-Hermitian qubits. Our findings reveal that weakly coupled non-Hermitian qubits can accelerate multiparty entanglement generation by thousands of times compared to Hermitian qubits, in particular when approaching the -th order exceptional points of qubits in the symmetric regime. Furthermore, we show that Hermitian qubits can generate GHZ states with a high fidelity more than in a timescale comparable to that of non-Hermitian qubits, but at the expense of intense driving and large coupling constant. Our approach is scalable to a large number of qubits, presenting a promising pathway for advancing quantum technologies through the non-Hermiticity and higher-order exceptional points in many-body quantum systems.
5 figures
References in corpus (58)
- Entanglement of Formation of an Arbitrary State of Two Qubits
- Real Spectra in Non-Hermitian Hamiltonians Having PT Symmetry
- Three qubits can be entangled in two inequivalent ways
- Making Sense of Non-Hermitian Hamiltonians
- Distributed Entanglement
- QuTiP: An open-source Python framework for the dynamics of open quantum systems
- Circuit Quantum Electrodynamics
- Complex Extension of Quantum Mechanics
- Non-Hermitian Physics
- Superconducting Qubits: Current State of Play
- Topological phases of non-Hermitian systems
- Symmetry and Topology in Non-Hermitian Physics
- Secure Quantum Key Distribution
- Quantum Resource Theories
- Measuring entanglement entropy through the interference of quantum many-body twins
- Observation of three-photon Greenberger-Horne-Zeilinger entanglement
- Topological energy transfer in an optomechanical system with exceptional points
- Qubit architecture with high coherence and fast tunable coupling
- Observation of parity-time symmetry breaking transitions in a dissipative Floquet system of ultracold atoms
- Graph States for Quantum Secret Sharing
- Quantum exceptional points of non-Hermitian Hamiltonians and Liouvillians: The effects of quantum jumps
- Quantum state tomography across the exceptional point in a single dissipative qubit
- Non-Hermitian topological phenomena: A review
- Entanglement Certification From Theory to Experiment
- Exponentially-enhanced quantum sensing with non-Hermitian lattice dynamics
- Symmetry and Higher-Order Exceptional Points
- Multi-partite entanglement speeds up quantum key distribution in networks
- Experimental Quantum Secret Sharing and Third-Man Quantum Cryptography
- Quantum jumps in the non-Hermitian dynamics of a superconducting qubit
- Dynamically encircling an exceptional point in a real quantum system
- Experimental Verification of Multipartite Entanglement in Quantum Networks
- Non-Hermitian Hamiltonians and no-go theorems in quantum information
- Experimental high-dimensional Greenberger-Horne-Zeilinger entanglement with superconducting transmon qutrits
- Observation of -symmetric quantum coherence in a single ion system
- Observation of Exceptional Points in Thermal Atomic Ensembles
- Signatures of Liouvillian exceptional points in a quantum thermal machine
- Speeding up entanglement generation by proximity to higher-order exceptional points
- Experimental test of non-macrorealistic cat-states in the cloud
- Delayed sudden death of entanglement at exceptional points
- Experimental entanglement-enhanced work extraction based on a Maxwell's demon
- Genuine quantum networks: superposed tasks and addressing
- Complete classification of steerability under local filters and its relation with measurement incompatibility
- Creation of 2000-atom Greenberger-Horne-Zeilinger states by entanglement amplification
- Einstein-Podolsky-Rosen steering: Its geometric quantification and witness
- A programmable three-qubit superconducting processor with all-to-all connectivity
- Long-range connectivity in a superconducting quantum processor using a ring resonator
- Multipartite entanglement outperforming bipartite entanglement under limited quantum system sizes
- Modular quantum processor with an all-to-all reconfigurable router
- Tripartite entanglement measure under local operations and classical communication
- Maximal quantum entanglement at exceptional points via unitary and thermal dynamics
- Bath engineering of a fluorescing artificial atom with a photonic crystal
- Chiral Bell-state transfer via dissipative Liouvillian dynamics
- Blueprint for all-to-all connected superconducting spin qubits
- Dissipative stabilization of high-dimensional GHZ states for neutral atoms
- Chiral quantum heating and cooling with an optically controlled ion
- Deterministic one-way logic gates on a cloud quantum computer
- Generating scalable graph states in an atom-nanophotonic interface
- Scalable Determination of Multipartite Entanglement in Quantum Networks
Cited by in corpus (5)
- Efficient and controlled symmetric and asymmetric Bell-state transfers in a dissipative Jaynes-Cummings model
- High-fidelity multipartite entanglement creation in non-Hermitian qubits
- Robustness of tripartite entangled states in passive PT-symmetric qubits
- Non-Hermiticity induced thermal entanglement phase transition
- Quantum Simulation of Two-Level -Symmetric Systems Using Hermitian Hamiltonians