Double-dot interferometer for quantum measurement of Majorana qubits and
stabilizers
- URL: http://arxiv.org/abs/2002.06317v1
- Date: Sat, 15 Feb 2020 04:12:54 GMT
- Title: Double-dot interferometer for quantum measurement of Majorana qubits and
stabilizers
- Authors: Kai Zhou, Cheng Zhang, Lupei Qin, and Xin-Qi Li
- Abstract summary: We analyze the performance of a double-dot interferometer under the influence of environment noise.
Results are expected to be useful for future experiments of Majorana qubit and stabilizer measurements.
- Score: 11.55321238792263
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Motivated by the need of quantum measurement of Majorana qubits and
surface-code stabilizers, we analyze the performance of a double-dot
interferometer under the influence of environment noise. The double-dot setup
design allows accounting for the full multiple tunneling process between the
dots through the Majorana island, within a master equation approach. In the
co-tunneling regime, which results in a Majorana-mediated effective coupling
between the dots, the master equation approach allows us to obtain analytic
solutions for the measurement currents. The measurement quality, characterized
by figures of merit such as the visibility of measurement signals, is carried
out in regard to the unusual decoherence effect rather than `which-path'
dephasing. The results obtained in this work are expected to be useful for
future experiments of Majorana qubit and stabilizer measurements.
Related papers
- Feynman Diagrams for Matter Wave Interferometry [0.0]
We introduce a new theoretical framework based on Feynman diagrams to compute phase shifts in matter wave interferometry.
We apply the method to compute the response of matter wave interferometers to power law potentials and potentials with an arbitrary spatial dependence.
arXiv Detail & Related papers (2024-07-16T07:26:19Z) - Evolution of many-body systems under ancilla quantum measurements [58.720142291102135]
We study the concept of implementing quantum measurements by coupling a many-body lattice system to an ancillary degree of freedom.
We find evidence of a disentangling-entangling measurement-induced transition as was previously observed in more abstract models.
arXiv Detail & Related papers (2023-03-13T13:06:40Z) - Entanglement Meter: Estimation of entanglement with single copy in
Interferometer [0.0]
We show that several entanglement detection methods can be implemented efficiently in a Mach-Zehnder Interferometric set-up.
Our proposals bring out the power of Interferometric set-up in entanglement detection of pure and several mixed states.
arXiv Detail & Related papers (2022-09-30T17:11:18Z) - Detecting and Eliminating Quantum Noise of Quantum Measurements [3.871198861387443]
We first detect and then eliminate quantum noise so that the classical noise assumption is satisfied.
We demonstrate the feasibility of the two-stage procedure numerically on Baidu Quantum Platform.
Remarkably, the results show that quantum noise in measurement devices is significantly suppressed, and the quantum accuracy is substantially improved.
arXiv Detail & Related papers (2022-06-28T03:58:10Z) - Tunneling Gravimetry [58.80169804428422]
We examine the prospects of utilizing matter-wave Fabry-P'erot interferometers for enhanced inertial sensing applications.
Our study explores such tunneling-based sensors for the measurement of accelerations in two configurations.
arXiv Detail & Related papers (2022-05-19T09:22:11Z) - Experimentally determining the incompatibility of two qubit measurements [55.41644538483948]
We describe and realize an experimental procedure for assessing the incompatibility of two qubit measurements.
We demonstrate this fact in an optical setup, where the qubit states are encoded into the photons' polarization degrees of freedom.
arXiv Detail & Related papers (2021-12-15T19:01:44Z) - Finite resolution ancilla-assisted measurements of quantum work
distributions [77.34726150561087]
We consider an ancilla-assisted protocol measuring the work done on a quantum system driven by a time-dependent Hamiltonian.
We consider system Hamiltonians which both commute and do not commute at different times, finding corrections to fluctuation relations like the Jarzynski equality and the Crooks relation.
arXiv Detail & Related papers (2021-11-30T15:08:25Z) - Quantum asymmetry and noisy multi-mode interferometry [55.41644538483948]
Quantum asymmetry is a physical resource which coincides with the amount of coherence between the eigenspaces of a generator.
We show that the asymmetry may emphincrease as a result of a emphdecrease of coherence inside a degenerate subspace.
arXiv Detail & Related papers (2021-07-23T07:30:57Z) - Simulation of wave-particle duality in multi-path interferometers on a
quantum computer [0.0]
We present an architecture to investigate wave-particle duality in $N$-path interferometers on a universal quantum computer involving as low as $2log N$ qubits.
We implement our algorithms for interferometers with up to $N=16$ paths in proof-of-principle experiments on a noisy intermediate-scale quantum device.
arXiv Detail & Related papers (2020-09-09T07:37:18Z) - Visibility of noisy quantum dot-based measurements of Majorana qubits [0.0]
Majorana zero modes (MZMs) based on quantum dots (QDs) are of current interest as they provide a scalable platform for topological quantum computation.
We calculate the dependence of the charge of the QD and its differential capacitance on experimentally tunable parameters for both 2-MZM and 4-MZM measurements.
We find that on- or close-to-resonance measurements are generally preferable and predict, using conservative noise estimates, that noise coupling to the QDs is not a limitation to high-fidelity measurements of topological qubits.
arXiv Detail & Related papers (2020-07-21T18:17:25Z) - Quantum probes for universal gravity corrections [62.997667081978825]
We review the concept of minimum length and show how it induces a perturbative term appearing in the Hamiltonian of any quantum system.
We evaluate the Quantum Fisher Information in order to find the ultimate bounds to the precision of any estimation procedure.
Our results show that quantum probes are convenient resources, providing potential enhancement in precision.
arXiv Detail & Related papers (2020-02-13T19:35:07Z)
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.