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Open AccessJournal ArticleDOI

Variational quantum algorithm for estimating the quantum Fisher information

- 02 Feb 2022 - 
- Vol. 4, Iss: 1
TLDR
In this article , a variational quantum algorithm called Variational Quantum Fisher Information Estimation (VQFIE) is proposed to estimate lower and upper bounds on the QFI, based on bounding the fidelity.
Abstract
The Quantum Fisher information (QFI) quantifies the ultimate precision of estimating a parameter from a quantum state, and can be regarded as a reliability measure of a quantum system as a quantum sensor. However, estimation of the QFI for a mixed state is in general a computationally demanding task. In this work we present a variational quantum algorithm called Variational Quantum Fisher Information Estimation (VQFIE) to address this task. By estimating lower and upper bounds on the QFI, based on bounding the fidelity, VQFIE outputs a range in which the actual QFI lies. This result can then be used to variationally prepare the state that maximizes the QFI, for the application of quantum sensing. In contrast to previous approaches, VQFIE does not require knowledge of the explicit form of the sensor dynamics. We simulate the algorithm for a magnetometry setup and demonstrate the tightening of our bounds as the state purity increases. For this example, we compare our bounds to literature bounds and show that our bounds are tighter.

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Journal ArticleDOI

Challenges and opportunities in quantum machine learning

TL;DR: In this paper , the authors highlight differences between quantum and classical machine learning, with a focus on quantum neural networks and quantum deep learning, and discuss opportunities for quantum advantage with quantum machine learning.
Posted Content

Diagnosing barren plateaus with tools from quantum optimal control

TL;DR: In this paper, the authors employ tools from quantum optimal control to develop a framework that can diagnose the presence or absence of barren plateaus for problem-inspired ansatzes, such as the Quantum Alternating Operator Ansatz (QAOA), the Hamiltonian Variational Anatz (HVA), and others.
Journal ArticleDOI

Diagnosing Barren Plateaus with Tools from Quantum Optimal Control

- 29 Sep 2022 - 
TL;DR: In this article , the authors employ tools from quantum optimal control to develop a framework that can diagnose the presence or absence of barren plateaus for problem-inspired ansatzes, including the Quantum Alternating Operator Ansatz (QAOA), the Hamiltonian Variational Algorithm (HVA), and others.
Journal ArticleDOI

Group-Invariant Quantum Machine Learning

- 19 Sep 2022 - 
TL;DR: Group-invariant models as discussed by the authors use the underlying invariances in the data to build QML models that, by construction, respect those symmetries, produce outputs that remain invariant under the action of any element of the symmetry group associated with the dataset.
Journal ArticleDOI

Symmetry enhanced variational quantum spin eigensolver

TL;DR: In this paper , the symmetries of the Hamiltonian were exploited to improve the performance of the variational quantum eigensolver for high energy eigenstates. But, the complexity of integrating all the symmetry in the design of the circuit could be extremely challenging.
References
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Journal ArticleDOI

Observation of Gravitational Waves from a Binary Black Hole Merger

B. P. Abbott, +1011 more
TL;DR: This is the first direct detection of gravitational waves and the first observation of a binary black hole merger, and these observations demonstrate the existence of binary stellar-mass black hole systems.
Journal ArticleDOI

Quantum Computing in the NISQ era and beyond

TL;DR: Noisy Intermediate-Scale Quantum (NISQ) technology will be available in the near future as mentioned in this paper, which will be useful tools for exploring many-body quantum physics, and may have other useful applications.
Journal ArticleDOI

A variational eigenvalue solver on a photonic quantum processor

TL;DR: The proposed approach drastically reduces the coherence time requirements and combines this method with a new approach to state preparation based on ansätze and classical optimization, enhancing the potential of quantum resources available today and in the near future.
Journal ArticleDOI

Advances in quantum metrology

TL;DR: Quantum metrology is the use of quantum techniques such as entanglement to yield higher statistical precision than purely classical approaches as discussed by the authors, where the central limit theorem implies that the reduction is proportional to the square root of the number of repetitions.
Journal ArticleDOI

Hardware-efficient variational quantum eigensolver for small molecules and quantum magnets

TL;DR: The experimental optimization of Hamiltonian problems with up to six qubits and more than one hundred Pauli terms is demonstrated, determining the ground-state energy for molecules of increasing size, up to BeH2.
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