Quantum Phase Estimation (QPE) is one of the key techniques used in quantum computation to design quantum algorithms which can be exponentially faster than classical algorithms. Intuitively, QPE allows quantum algorithms to find the hidden structure in certain kinds of problems. In particular, Shor's well-known algorithm for factoring the product of two primes uses QPE. Simulation algorithms, such as Ground State Estimation (GSE) for quantum chemistry, also use QPE. Unfortunately, QPE can be computationally expensive, either requiring many trials of the computation (repetitions) or many small rotation operations on quantum bits. Selecting an efficient QPE approach requires detailed characterizations of the tradeoffs and overheads of these o...
Quantum phase estimation is one of the key algorithms in the field of quantum computing, but up unti...
The quantum phase estimation (QPE) is one of the fundamental algorithms based on the quantum Fourier...
The unavoidable finite time intervals between the sequential operations needed for performing practi...
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 (QPE) is the workhorse behind any quantum algorithm and a promising method...
Quantum signal processing (QSP) is a powerful quantum algorithm to exactly implement matrix polynomi...
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...
We consider performing phase estimation under the following conditions: we are given only one copy o...
While Quantum phase estimation (QPE) is at the core of many quantum algorithms known to date, its ph...
We introduce a variant of Quantum Amplitude Estimation (QAE), called Iterative QAE (IQAE), which doe...
I hereby declare that I am the sole author of this thesis. I authorize the University of Waterloo to...
Quantum computers use the quantum interference of different computational paths to enhance correct o...
As a signal recovery algorithm, compressed sensing is particularly useful when the data has low-comp...
Quantum phase estimation is one of the key algorithms in the field of quantum computing, but up unti...
The quantum phase estimation (QPE) is one of the fundamental algorithms based on the quantum Fourier...
The unavoidable finite time intervals between the sequential operations needed for performing practi...
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 (QPE) is the workhorse behind any quantum algorithm and a promising method...
Quantum signal processing (QSP) is a powerful quantum algorithm to exactly implement matrix polynomi...
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...
We consider performing phase estimation under the following conditions: we are given only one copy o...
While Quantum phase estimation (QPE) is at the core of many quantum algorithms known to date, its ph...
We introduce a variant of Quantum Amplitude Estimation (QAE), called Iterative QAE (IQAE), which doe...
I hereby declare that I am the sole author of this thesis. I authorize the University of Waterloo to...
Quantum computers use the quantum interference of different computational paths to enhance correct o...
As a signal recovery algorithm, compressed sensing is particularly useful when the data has low-comp...
Quantum phase estimation is one of the key algorithms in the field of quantum computing, but up unti...
The quantum phase estimation (QPE) is one of the fundamental algorithms based on the quantum Fourier...
The unavoidable finite time intervals between the sequential operations needed for performing practi...