Quantum phase estimation (QPE) is the workhorse behind any quantum algorithm and a promising method for determining ground state energies of strongly correlated quantum systems. Low-cost QPE techniques make use of circuits which only use a single ancilla qubit, requiring classical post-processing to extract eigenvalue details of the system. We investigate choices for phase estimation for a unitary matrix with low-depth noise-free or noisy circuits, varying both the phase estimation circuits themselves as well as the classical post-processing to determine the eigenvalue phases. We work in the scenario when the input state is not an eigenstate of the unitary matrix. We develop a new post-processing technique to extract eigenvalues from phase...
We construct quantum circuits that exactly encode the spectra of correlated electron models up to er...
Quantum computers promise to efficiently solve important problems that are intractable on a conventi...
In this work we present a detailed analysis of variational quantum phase estimation (VQPE), a method...
Quantum phase estimation (QPE) is the workhorse behind any quantum algorithm and a promising method...
In this work we investigate a binned version of quantum phase estimation (QPE) set out by Somma (201...
In this work we present a detailed analysis of variational quantum phase estimation (VQPE), a method...
Quantum computing is the field that studies computation using quantum mechanical systems, exploiting...
As a signal recovery algorithm, compressed sensing is particularly useful when the data has low-comp...
We consider performing phase estimation under the following conditions: we are given only one copy o...
Quantum Phase Estimation (QPE) is one of the key techniques used in quantum computation to design qu...
A quantum algorithm solves computational tasks using fewer physical resources than the best-known cl...
We develop a phase estimation method with a distinct feature: its maximal runtime (which determines ...
The quantum phase estimation (QPE) is one of the fundamental algorithms based on the quantum Fourier...
We revisit quantum phase estimation algorithms for the purpose of obtaining the energy levels of man...
We consider the task of spectral estimation of local quantum Hamiltonians. The spectral estimation i...
We construct quantum circuits that exactly encode the spectra of correlated electron models up to er...
Quantum computers promise to efficiently solve important problems that are intractable on a conventi...
In this work we present a detailed analysis of variational quantum phase estimation (VQPE), a method...
Quantum phase estimation (QPE) is the workhorse behind any quantum algorithm and a promising method...
In this work we investigate a binned version of quantum phase estimation (QPE) set out by Somma (201...
In this work we present a detailed analysis of variational quantum phase estimation (VQPE), a method...
Quantum computing is the field that studies computation using quantum mechanical systems, exploiting...
As a signal recovery algorithm, compressed sensing is particularly useful when the data has low-comp...
We consider performing phase estimation under the following conditions: we are given only one copy o...
Quantum Phase Estimation (QPE) is one of the key techniques used in quantum computation to design qu...
A quantum algorithm solves computational tasks using fewer physical resources than the best-known cl...
We develop a phase estimation method with a distinct feature: its maximal runtime (which determines ...
The quantum phase estimation (QPE) is one of the fundamental algorithms based on the quantum Fourier...
We revisit quantum phase estimation algorithms for the purpose of obtaining the energy levels of man...
We consider the task of spectral estimation of local quantum Hamiltonians. The spectral estimation i...
We construct quantum circuits that exactly encode the spectra of correlated electron models up to er...
Quantum computers promise to efficiently solve important problems that are intractable on a conventi...
In this work we present a detailed analysis of variational quantum phase estimation (VQPE), a method...