Quantum computers are devices that use quantum phenomena for information processing, with the advantage of solving specific problems faster than classical computers. Superconducting circuits with Josephson junctions have emerged as one of the most promising platforms for large-scale quantum computing in the last decade. However, in the current noisy intermediate-scale quantum era, circuits and algorithms suffer from low fidelities and limited amount of superconducting quantum bits, or qubits. Short coherence times owing to undesired transitions between the excited and ground states of a qubit, are one of the primary sources of error. This work studies the contribution of losses arising from two-level systems, localized predominantly in...
Ever since Peter Shor's ground-breaking discovery in 1994 of an algorithm capable of factoring large...
We investigate numerically the effects of interactions on the transport properties through a sawtoot...
Here we use superconducting circuits as components for quantum computing and as model systems for no...
The public defence will be organised via Zoom on 4.12.2020 12:00 – 16:00, https://aalto.zoom.us/j/63...
A doctoral dissertation completed for the degree of Doctor of Science (Technology) to be defended, ...
Defence is held on 13.8.2021 13:00 – 17:00 via remote technology (Zoom), https://aalto.zoom.us/j/...
A quantum computer will potentially solve far-reaching problems which are currently intractable on a...
In circuit quantum electrodynamics the coherence of Cooper pairs in superconductors is employed to c...
A quantum computer is an information processing machine, much like an ordinary classical computer, b...
Superconducting circuits and devices have unique properties that make them interesting from both the...
Over the past two decades the performance of superconducting quantum bits (qubits) has been improved...
Circuit quantum electrodynamics offers versatile opportunities for various discoveries infundamental...
It is important that measurements produce predictable and reproducible results irrespective of time ...
Quantum bits, or qubits, are an example of coherent circuits envisioned for next-generation computer...
A quantum computer would exploit the phenomena of quantum superposition and entanglement in its func...
Ever since Peter Shor's ground-breaking discovery in 1994 of an algorithm capable of factoring large...
We investigate numerically the effects of interactions on the transport properties through a sawtoot...
Here we use superconducting circuits as components for quantum computing and as model systems for no...
The public defence will be organised via Zoom on 4.12.2020 12:00 – 16:00, https://aalto.zoom.us/j/63...
A doctoral dissertation completed for the degree of Doctor of Science (Technology) to be defended, ...
Defence is held on 13.8.2021 13:00 – 17:00 via remote technology (Zoom), https://aalto.zoom.us/j/...
A quantum computer will potentially solve far-reaching problems which are currently intractable on a...
In circuit quantum electrodynamics the coherence of Cooper pairs in superconductors is employed to c...
A quantum computer is an information processing machine, much like an ordinary classical computer, b...
Superconducting circuits and devices have unique properties that make them interesting from both the...
Over the past two decades the performance of superconducting quantum bits (qubits) has been improved...
Circuit quantum electrodynamics offers versatile opportunities for various discoveries infundamental...
It is important that measurements produce predictable and reproducible results irrespective of time ...
Quantum bits, or qubits, are an example of coherent circuits envisioned for next-generation computer...
A quantum computer would exploit the phenomena of quantum superposition and entanglement in its func...
Ever since Peter Shor's ground-breaking discovery in 1994 of an algorithm capable of factoring large...
We investigate numerically the effects of interactions on the transport properties through a sawtoot...
Here we use superconducting circuits as components for quantum computing and as model systems for no...