Implementation of multiparticle quantum speed limits on observables
- URL: http://arxiv.org/abs/2510.05794v1
- Date: Tue, 07 Oct 2025 11:11:24 GMT
- Title: Implementation of multiparticle quantum speed limits on observables
- Authors: Rui-Heng Miao, Zhao-Di Liu, Chen-Xi Ning, Yu-Cong Hu, Hao Zhang, Chuan-Feng Li, Guang-Can Guo,
- Abstract summary: We experimentally verify that both multiparticles and entanglement can accelerate the quantum speed on observables in two-particle systems.<n>We experimentally prove that the initial quantum state plays a critical role in the quantum speed limits of the entangled systems.
- Score: 3.741808611357374
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: The energy-time uncertainty relation limits the maximum speed of quantum system evolution and is crucial for determining whether quantum tasks can be accelerated. However, multiparticle quantum speed limits have not been experimentally explored. In this work, we experimentally verify that both multiparticles and entanglement can accelerate the quantum speed on observables in two-particle systems based on ultrahigh precision control of quantum evolution time. Furthermore, we experimentally prove that the initial quantum state plays a critical role in the quantum speed limits of the entangled systems. In addition, we experimentally demonstrate that the upper bound and lower bound of the quantum speed are workable even in a nonunitary Markovian open system with two photons. The results obtained based on two-photon experiments have been shown to be generalizable to more particles. Our work facilitates the characterization of the dynamic transient properties of complex quantum systems and the control of the quantum speed of large-scale quantum systems.
Related papers
- Quantum-imaginarity-based quantum speed limit [2.003078340059495]
We explore the relationship between quantum imaginarity and the quantum speed limit.<n>These speed limits define the fundamental constraints on the minimum time necessary for quantum systems to evolve.
arXiv Detail & Related papers (2025-11-08T10:17:31Z) - Topological control of quantum speed limits [55.2480439325792]
We show that even if the quantum state is completely dispersionless, QFI in this state remains momentum-resolved.<n>We find bounds on quantum speed limit which scales as $sqrt|C|$ in a (dispersionless) topological phase.
arXiv Detail & Related papers (2025-07-21T18:00:07Z) - Fast mixed-species quantum logic gates for trapped-ion quantum networks [34.26719239756968]
We propose an approach to high-speed mixed-speciesangling operations in trapped-ion quantum computers.<n>We develop the theory and machine-design of pulse sequences that realise MHz-speed fast gates'<n>We show enables the protection of matter-photon interfaces against rapid spin dephasing in optical networks of trapped-ion processors.
arXiv Detail & Related papers (2024-12-10T04:47:53Z) - Quantum Speed limit on the production of quantumness of observables [0.0]
Non-classical features of quantum systems can degrade when subjected to environment and noise.
We prove speed limits on the quantumness of observable as the norm of the commutator of two given observables.
arXiv Detail & Related papers (2024-09-20T10:02:39Z) - Quantum highway: Observation of minimal and maximal speed limits for few and many-body states [19.181412608418608]
Inspired by the energy-time uncertainty principle, bounds have been demonstrated on the maximal speed at which a quantum state can change.
We show that one can test the known quantum speed limits and that modifying a single Hamiltonian parameter allows the observation of the crossover of the different bounds on the dynamics.
arXiv Detail & Related papers (2024-08-21T18:00:07Z) - Proof-of-concept Quantum Simulator based on Molecular Spin Qudits [39.28601213393797]
We show the first prototype quantum simulator based on an ensemble of molecular qudits and a radiofrequency broadband spectrometer.
Results represent an important step towards the actual use of molecular spin qudits in quantum technologies.
arXiv Detail & Related papers (2023-09-11T16:33:02Z) - Exact Quantum Speed Limits [0.0]
We derive exact quantum speed limits for the unitary dynamics of pure-state quantum system.
We estimate the evolution time for two- and higher-dimensional quantum systems.
Results will have a significant impact on our understanding of quantum physics.
arXiv Detail & Related papers (2023-05-05T20:38:54Z) - Entanglement-assisted quantum speedup: Beating local quantum speed limits [0.0]
Research in quantum information science aims to surpass the scaling limitations of classical information processing.
Speed limits in interacting quantum systems are derived by comparing the rates of change in actual quantum dynamics.
Proposed speed limits provide a tight bound on quantum speed advantage, including a quantum gain that can scale exponentially with the system's size.
arXiv Detail & Related papers (2022-11-27T17:38:57Z) - Imaginary Time Propagation on a Quantum Chip [50.591267188664666]
Evolution in imaginary time is a prominent technique for finding the ground state of quantum many-body systems.
We propose an algorithm to implement imaginary time propagation on a quantum computer.
arXiv Detail & Related papers (2021-02-24T12:48:00Z) - Information Scrambling in Computationally Complex Quantum Circuits [56.22772134614514]
We experimentally investigate the dynamics of quantum scrambling on a 53-qubit quantum processor.
We show that while operator spreading is captured by an efficient classical model, operator entanglement requires exponentially scaled computational resources to simulate.
arXiv Detail & Related papers (2021-01-21T22:18:49Z) - Quantum Phases of Matter on a 256-Atom Programmable Quantum Simulator [41.74498230885008]
We demonstrate a programmable quantum simulator based on deterministically prepared two-dimensional arrays of neutral atoms.
We benchmark the system by creating and characterizing high-fidelity antiferromagnetically ordered states.
We then create and study several new quantum phases that arise from the interplay between interactions and coherent laser excitation.
arXiv Detail & Related papers (2020-12-22T19:00:04Z) - Experimental Quantum Generative Adversarial Networks for Image
Generation [93.06926114985761]
We experimentally achieve the learning and generation of real-world hand-written digit images on a superconducting quantum processor.
Our work provides guidance for developing advanced quantum generative models on near-term quantum devices.
arXiv Detail & Related papers (2020-10-13T06:57:17Z) - Quantum time dilation: A new test of relativistic quantum theory [91.3755431537592]
A novel quantum time dilation effect is shown to arise when a clock moves in a quantum superposition of two relativistic velocities.
This effect is argued to be measurable using existing atomic interferometry techniques, potentially offering a new test of relativistic quantum theory.
arXiv Detail & Related papers (2020-04-22T19:26:53Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.