Multi-squeezed state generation and universal bosonic control via a
driven quantum Rabi model
- URL: http://arxiv.org/abs/2209.07958v1
- Date: Fri, 16 Sep 2022 14:18:53 GMT
- Title: Multi-squeezed state generation and universal bosonic control via a
driven quantum Rabi model
- Authors: Peter McConnell, Alessandro Ferraro, Ricardo Puebla
- Abstract summary: Universal control over a bosonic degree of freedom is key in the quest for quantum-based technologies.
Here we consider a single ancillary two-level system, interacting with the bosonic mode of interest via a driven quantum Rabi model.
We show that it is sufficient to induce the deterministic realization of a large class of Gaussian and non-Gaussian gates, which in turn provide universal bosonic control.
- Score: 68.8204255655161
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Universal control over a bosonic degree of freedom is key in the quest for
quantum-based technologies. Such universal control requires however the ability
to perform demanding non-Gaussian gates -- namely, higher-than-quadratic
interactions at the level of the bosonic operators. Here we consider a single
ancillary two-level system, interacting with the bosonic mode of interest via a
driven quantum Rabi model, and show that it is sufficient to induce the
deterministic realization of a large class of Gaussian and non-Gaussian gates,
which in turn provide universal bosonic control. This scheme reduces the
overhead of previous ancilla-based methods where long gate-sequences are
required to generate highly populated targets. In fact, our method naturally
yields the high-fidelity preparation of multi-squeezed states -- i.e., the
high-order generalization of displaced and squeezed states -- which feature
large phase-space Wigner negativities. The universal control is further
illustrated by generating a cubic-phase gate. Finally, we address the
resilience of the method in the presence of realistic noise. Due to the
ubiquity of the considered interaction, our scheme might open new avenues in
the design, preparation, and control of bosonic states in different setups.
Related papers
- Harnessing quantum chaos in spin-boson models for all-purpose quantum-enhanced sensing [4.327903548212366]
Many-body quantum chaos has immense potential as a tool to accelerate the preparation of entangled states.
We show that our approach is robust to technical noise and imperfections and thus opens new opportunities to exploit complex entangled states.
arXiv Detail & Related papers (2024-10-04T23:14:10Z) - Generating arbitrary superpositions of nonclassical quantum harmonic oscillator states [0.0]
We create arbitrary superpositions of nonclassical and non-Gaussian states of a quantum harmonic oscillator using the motion of a trapped ion coupled to its internal spin states.
We observe the nonclassical nature of these states in the form of Wigner negativity following a full state reconstruction.
arXiv Detail & Related papers (2024-09-05T12:45:57Z) - Crosstalk-Robust Quantum Control in Multimode Bosonic Systems [34.03303487556571]
High-coherence superconducting cavities offer a hardware-efficient platform for quantum information processing.
To achieve universal operations of bosonic modes, the requisite nonlinearity is realized by coupling them to a transmon ancilla.
We employ quantum optimal control to engineer ancilla pulses that are robust to the frequency shifts.
arXiv Detail & Related papers (2024-03-01T04:33:12Z) - Quantum Gate Optimization for Rydberg Architectures in the Weak-Coupling
Limit [55.05109484230879]
We demonstrate machine learning assisted design of a two-qubit gate in a Rydberg tweezer system.
We generate optimal pulse sequences that implement a CNOT gate with high fidelity.
We show that local control of single qubit operations is sufficient for performing quantum computation on a large array of atoms.
arXiv Detail & Related papers (2023-06-14T18:24:51Z) - Quantum Gate Generation in Two-Level Open Quantum Systems by Coherent
and Incoherent Photons Found with Gradient Search [77.34726150561087]
We consider an environment formed by incoherent photons as a resource for controlling open quantum systems via an incoherent control.
We exploit a coherent control in the Hamiltonian and an incoherent control in the dissipator which induces the time-dependent decoherence rates.
arXiv Detail & Related papers (2023-02-28T07:36:02Z) - Quantum emulation of the transient dynamics in the multistate
Landau-Zener model [50.591267188664666]
We study the transient dynamics in the multistate Landau-Zener model as a function of the Landau-Zener velocity.
Our experiments pave the way for more complex simulations with qubits coupled to an engineered bosonic mode spectrum.
arXiv Detail & Related papers (2022-11-26T15:04:11Z) - Robust control of linear systems and shortcut to adiabaticity based on
superoscillations [9.721400195178063]
Inverse engineering Lagrangian formalism developed here generalizes the one commonly used to describe the superoscillation phenomenon.
Our approach also allows to improve the sensing capabilities by an appropriate control of the system.
arXiv Detail & Related papers (2022-07-05T18:10:49Z) - Optimal quantum control via genetic algorithms for quantum state
engineering in driven-resonator mediated networks [68.8204255655161]
We employ a machine learning-enabled approach to quantum state engineering based on evolutionary algorithms.
We consider a network of qubits -- encoded in the states of artificial atoms with no direct coupling -- interacting via a common single-mode driven microwave resonator.
We observe high quantum fidelities and resilience to noise, despite the algorithm being trained in the ideal noise-free setting.
arXiv Detail & Related papers (2022-06-29T14:34:00Z) - Quantum control landscape for ultrafast generation of single-qubit phase
shift quantum gates [68.8204255655161]
We consider the problem of ultrafast controlled generation of single-qubit phase shift quantum gates.
Globally optimal control is a control which realizes the gate with maximal possible fidelity.
Trap is a control which is optimal only locally but not globally.
arXiv Detail & Related papers (2021-04-26T16:38:43Z)
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.