We provide a modification to the quantum phase estimation algorithm (QPEA) inspired on classical windowing methods for spectral density estimation. From this modification we obtain an upper bound in the cost that implies a cubic improvement with respect to the algorithm's error rate. Numerical evaluation of the costs also demonstrates an improvement. Moreover, with similar techniques, we detail an iterative projective measurement method for ground state preparation that gives an exponential improvement over previous bounds using QPEA. Numerical tests that confirm the expected scaling behavior are also obtained. For these numerical tests we have used a Lattice Thirring model as testing ground. Using well-known perturbation theory results, we...
Quantum computing can provide speedups in solving many problems as the evolution of a quantum system...
Quantum phase estimation is an important component in diverse quantum algorithms. However, it suffer...
While Quantum phase estimation (QPE) is at the core of many quantum algorithms known to date, its ph...
Quantum phase estimation is an important component in diverse quantum algorithms. However, it suffer...
Quantum Phase Estimation (QPE) is one of the key techniques used in quantum computation to design qu...
Quantum computing is the field that studies computation using quantum mechanical systems, exploiting...
Quantum phase estimation is one of the key algorithms in the field of quantum computing, but up unti...
We introduce a variant of Quantum Amplitude Estimation (QAE), called Iterative QAE (IQAE), which doe...
Quantum phase estimation (QPE) is the workhorse behind any quantum algorithm and a promising method...
A quantum algorithm solves computational tasks using fewer physical resources than the best-known cl...
While Quantum phase estimation (QPE) is at the core of many quantum algorithms known to date, its ph...
Extracting the outcome of a quantum computation is a difficult task. In many cases, the quantum phas...
The quantum phase estimation (QPE) is one of the fundamental algorithms based on the quantum Fourier...
In this work we investigate a binned version of quantum phase estimation (QPE) set out by Somma (201...
We develop an efficient quantum implementation of an important signal processing algorithm for line ...
Quantum computing can provide speedups in solving many problems as the evolution of a quantum system...
Quantum phase estimation is an important component in diverse quantum algorithms. However, it suffer...
While Quantum phase estimation (QPE) is at the core of many quantum algorithms known to date, its ph...
Quantum phase estimation is an important component in diverse quantum algorithms. However, it suffer...
Quantum Phase Estimation (QPE) is one of the key techniques used in quantum computation to design qu...
Quantum computing is the field that studies computation using quantum mechanical systems, exploiting...
Quantum phase estimation is one of the key algorithms in the field of quantum computing, but up unti...
We introduce a variant of Quantum Amplitude Estimation (QAE), called Iterative QAE (IQAE), which doe...
Quantum phase estimation (QPE) is the workhorse behind any quantum algorithm and a promising method...
A quantum algorithm solves computational tasks using fewer physical resources than the best-known cl...
While Quantum phase estimation (QPE) is at the core of many quantum algorithms known to date, its ph...
Extracting the outcome of a quantum computation is a difficult task. In many cases, the quantum phas...
The quantum phase estimation (QPE) is one of the fundamental algorithms based on the quantum Fourier...
In this work we investigate a binned version of quantum phase estimation (QPE) set out by Somma (201...
We develop an efficient quantum implementation of an important signal processing algorithm for line ...
Quantum computing can provide speedups in solving many problems as the evolution of a quantum system...
Quantum phase estimation is an important component in diverse quantum algorithms. However, it suffer...
While Quantum phase estimation (QPE) is at the core of many quantum algorithms known to date, its ph...