We study a model for the accumulation of errors in multi-qubit quantum computations, as well as a model describing continuous errors accumulating in a single qubit. By modeling the error process in a quantum computation using two coupled Markov chains, we are able to capture a weak form of time-dependency between errors in the past and future. By subsequently using techniques from the field of discrete probability theory, we calculate the probability that error measures such as the fidelity and trace distance exceed a threshold analytically. The formulae cover fairly generic error distributions, cover multi-qubit scenarios, and are applicable to e.g. the randomized benchmarking protocol. To combat the numerical challenge that may occur when...
Quantum error correcting codes are designed to pinpoint exactly when and where errors occur in quant...
We demonstrate that small quantum memories, realised via quantum error correction in multi-qubit dev...
A universal, scalable quantum computer will require the use of quantum error correction in order to ...
We study a model for the accumulation of errors in multi-qubit quantum computations, as well as a mo...
We study a classical model for the accumulation of errors in multi-qubit quantum computations. By mo...
Errors in quantum logic gates are usually modeled by quantum process matrices (CPTP maps). But proce...
A general method to mitigate the effect of errors in quantum circuits is outlined. The method is dev...
The inevitable accumulation of errors in near-future quantum devices represents a key obstacle in de...
It is vital to minimise the impact of errors for near-future quantum devices that will lack the reso...
Errors are likely to be a serious problem for quantum computers, both because they are built of sma...
This thesis is concerned with certain theoretical problems that arise naturally in the context of fa...
The hope of the quantum computing field is that quantum architectures are able to scale up and reali...
Fault tolerant quantum computation is a technique to perform reliable quantum computation using nois...
It is vital to minimize the impact of errors for near-future quantum devices that will lack the reso...
41 pages, 3 figuresQuantum error mitigation has been proposed as a means to combat unavoidable error...
Quantum error correcting codes are designed to pinpoint exactly when and where errors occur in quant...
We demonstrate that small quantum memories, realised via quantum error correction in multi-qubit dev...
A universal, scalable quantum computer will require the use of quantum error correction in order to ...
We study a model for the accumulation of errors in multi-qubit quantum computations, as well as a mo...
We study a classical model for the accumulation of errors in multi-qubit quantum computations. By mo...
Errors in quantum logic gates are usually modeled by quantum process matrices (CPTP maps). But proce...
A general method to mitigate the effect of errors in quantum circuits is outlined. The method is dev...
The inevitable accumulation of errors in near-future quantum devices represents a key obstacle in de...
It is vital to minimise the impact of errors for near-future quantum devices that will lack the reso...
Errors are likely to be a serious problem for quantum computers, both because they are built of sma...
This thesis is concerned with certain theoretical problems that arise naturally in the context of fa...
The hope of the quantum computing field is that quantum architectures are able to scale up and reali...
Fault tolerant quantum computation is a technique to perform reliable quantum computation using nois...
It is vital to minimize the impact of errors for near-future quantum devices that will lack the reso...
41 pages, 3 figuresQuantum error mitigation has been proposed as a means to combat unavoidable error...
Quantum error correcting codes are designed to pinpoint exactly when and where errors occur in quant...
We demonstrate that small quantum memories, realised via quantum error correction in multi-qubit dev...
A universal, scalable quantum computer will require the use of quantum error correction in order to ...