Qudit Dynamical Decoupling on a Superconducting Quantum Processor
- URL: http://arxiv.org/abs/2407.04893v1
- Date: Fri, 5 Jul 2024 23:37:29 GMT
- Title: Qudit Dynamical Decoupling on a Superconducting Quantum Processor
- Authors: Vinay Tripathi, Noah Goss, Arian Vezvaee, Long B. Nguyen, Irfan Siddiqi, Daniel A. Lidar,
- Abstract summary: We develop protocols for dynamical decoupling of qudit systems based on the Heisenberg-Weyl group.
We demonstrate single-qudit DD sequences to decouple qutrits and ququarts from system-bath-induced decoherence.
We also introduce two-qudit DD sequences designed to suppress the detrimental cross-Kerr couplings between coupled qudits.
- Score: 0.0
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: Multi-level qudit systems are increasingly being explored as alternatives to traditional qubit systems due to their denser information storage and processing potential. However, qudits are more susceptible to decoherence than qubits due to increased loss channels, noise sensitivity, and crosstalk. To address these challenges, we develop protocols for dynamical decoupling (DD) of qudit systems based on the Heisenberg-Weyl group. We implement and experimentally verify these DD protocols on a superconducting transmon processor that supports qudit operation based on qutrits $(d=3)$ and ququarts $(d=4)$. Specifically, we demonstrate single-qudit DD sequences to decouple qutrits and ququarts from system-bath-induced decoherence. We also introduce two-qudit DD sequences designed to suppress the detrimental cross-Kerr couplings between coupled qudits. This allows us to demonstrate a significant improvement in the fidelity of time-evolved qutrit Bell states. Our results highlight the utility of leveraging DD to enable scalable qudit-based quantum computing.
Related papers
- Joint Transmit and Pinching Beamforming for Pinching Antenna Systems (PASS): Optimization-Based or Learning-Based? [89.05848771674773]
A novel antenna system ()-enabled downlink multi-user multiple-input single-output (MISO) framework is proposed.
It consists of multiple waveguides, which equip numerous low-cost antennas, named (PAs)
The positions of PAs can be reconfigured to both spanning large-scale path and space.
arXiv Detail & Related papers (2025-02-12T18:54:10Z) - Efficient Chromatic-Number-Based Multi-Qubit Decoherence and Crosstalk Suppression [0.0]
"Chromatic-Hadamard Dynamical Decoupling" (CHaDD) is an approach that efficiently schedules dynamical decoupling pulses for quantum devices with arbitrary qubit connectivity.
We show that CHaDD can become a useful tool for enhancing the performance and scalability of quantum computers.
arXiv Detail & Related papers (2024-06-20T00:23:02Z) - Learning How to Dynamically Decouple [0.40964539027092917]
Current quantum computers suffer from noise that stems from interactions between the quantum system and its environment.
We show that the performance of dynamical decoupling can be improved by optimizing its rotational gates to tailor them to the quantum hardware.
arXiv Detail & Related papers (2024-05-14T15:11:39Z) - Syncopated Dynamical Decoupling for Suppressing Crosstalk in Quantum
Circuits [12.29963230632145]
We study the use of dynamical decoupling in characterizing undesired two-qubit couplings and the underlying single-qubit decoherence.
We develop a syncopated decoupling technique which protects against decoherence and selectively targets unwanted two-qubit interactions.
arXiv Detail & Related papers (2024-03-12T17:18:35Z) - Multi-qubit Dynamical Decoupling for Enhanced Crosstalk Suppression [0.3351644102216694]
Static crosstalk exists in various hardware platforms, including superconductor and semiconductor qubits.
driven crosstalk may occur as an unwanted drive term due to leakage from driven gates on other qubits.
We develop two experimental setups -- an "idle-idle" experiment in which two pairs of qubits undergo free evolution simultaneously and a "driven-idle" experiment in which one pair is continuously driven.
arXiv Detail & Related papers (2024-03-08T15:36:15Z) - Fault-tolerant quantum architectures based on erasure qubits [49.227671756557946]
We exploit the idea of erasure qubits, relying on an efficient conversion of the dominant noise into erasures at known locations.
We propose and optimize QEC schemes based on erasure qubits and the recently-introduced Floquet codes.
Our results demonstrate that, despite being slightly more complex, QEC schemes based on erasure qubits can significantly outperform standard approaches.
arXiv Detail & Related papers (2023-12-21T17:40:18Z) - Enhancing Dispersive Readout of Superconducting Qubits Through Dynamic
Control of the Dispersive Shift: Experiment and Theory [47.00474212574662]
A superconducting qubit is coupled to a large-bandwidth readout resonator.
We show a beyond-state-of-the-art two-state-readout error of only 0.25,%$ in 100 ns integration time.
The presented results are expected to further boost the performance of new and existing algorithms and protocols.
arXiv Detail & Related papers (2023-07-15T10:30:10Z) - Universal qudit gate synthesis for transmons [44.22241766275732]
We design a superconducting qudit-based quantum processor.
We propose a universal gate set featuring a two-qudit cross-resonance entangling gate.
We numerically demonstrate the synthesis of $rm SU(16)$ gates for noisy quantum hardware.
arXiv Detail & Related papers (2022-12-08T18:59:53Z) - Erasure qubits: Overcoming the $T_1$ limit in superconducting circuits [105.54048699217668]
amplitude damping time, $T_phi$, has long stood as the major factor limiting quantum fidelity in superconducting circuits.
We propose a scheme for overcoming the conventional $T_phi$ limit on fidelity by designing qubits in a way that amplitude damping errors can be detected and converted into erasure errors.
arXiv Detail & Related papers (2022-08-10T17:39:21Z) - High fidelity two-qubit gates on fluxoniums using a tunable coupler [47.187609203210705]
Superconducting fluxonium qubits provide a promising alternative to transmons on the path toward large-scale quantum computing.
A major challenge for multi-qubit fluxonium devices is the experimental demonstration of a scalable crosstalk-free multi-qubit architecture.
Here, we present a two-qubit fluxonium-based quantum processor with a tunable coupler element.
arXiv Detail & Related papers (2022-03-30T13:44:52Z) - Efficient Bipartite Entanglement Detection Scheme with a Quantum
Adversarial Solver [89.80359585967642]
Proposal reformulates the bipartite entanglement detection as a two-player zero-sum game completed by parameterized quantum circuits.
We experimentally implement our protocol on a linear optical network and exhibit its effectiveness to accomplish the bipartite entanglement detection for 5-qubit quantum pure states and 2-qubit quantum mixed states.
arXiv Detail & Related papers (2022-03-15T09:46:45Z) - Scalable Method for Eliminating Residual $ZZ$ Interaction between
Superconducting Qubits [14.178204625914194]
We show a practically approach for complete cancellation of residual $ZZ$ interaction between fixed-frequency transmon qubits.
We verify the cancellation performance by measuring vanishing two-qubit entangling phases and $ZZ$ correlations.
Our method allows independent addressability of each qubit-qubit connection, and is applicable to both nontunable and tunable couplers.
arXiv Detail & Related papers (2021-11-26T02:04:49Z) - Suppression of crosstalk in superconducting qubits using dynamical
decoupling [0.0]
Super superconducting quantum processors with interconnected transmon qubits are noisy and prone to various errors.
ZZ-coupling between qubits in fixed frequency transmon architectures is always present and contributes to both coherent and incoherent crosstalk errors.
We propose the use of dynamical decoupling to suppress the crosstalk, and demonstrate the success of this scheme through experiments on several IBM quantum cloud processors.
arXiv Detail & Related papers (2021-08-10T09:16:05Z)
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.