collaborators

6 papers

quant-ph2025

Native-oxide-passivated trilayer junctions for superconducting qubits

Pankaj Sethi, Om Prakash, Jukka-Pekka Kaikkonen +15

Superconducting qubits in today's quantum processing units are typically fabricated with angle-evaporated aluminum--aluminum-oxide--aluminum Josephson junctions. However, there is…

quant-ph2025

Correlation measurement of propagating microwave photons at millikelvin

Aarne Keränen, Qi-Ming Chen, András Gunyhó +5

Microwave photons are important carriers of quantum information in many promising platforms for quantum computing. They can be routinely generated, controlled, and teleported in ex…

quant-ph2025

Methods to achieve near-millisecond energy relaxation and dephasing times for a superconducting transmon qubit

Mikko Tuokkola, Yoshiki Sunada, Heidi Kivijärvi +6

Superconducting qubits are one of the most promising physical systems for implementing quantum computers. However, executing quantum algorithms of practical computational advantage…

quant-ph2024

Quantum SWAP gate realized with CZ and iSWAP gates in a superconducting architecture

Christian Križan, Janka Biznárová, Liangyu Chen +19

It is advantageous for any quantum processor to support different classes of two-qubit quantum logic gates when compiling quantum circuits, a property that is typically not seen wi…

cond-mat.supr-con2024

Efficient electronic cooling above 2 K by niobium-based superconducting tunnel junctions

J. Hätinen, A. Ronzani, R. P. Loreto +15

Replacing the bulky cryoliquid-based cooling stages of cryoenabled instruments by chip-scale refrigeration is envisioned to disruptively reduce the system size similar to microproc…

quant-ph2024

Fast unconditional reset and leakage reduction in fixed-frequency transmon qubits

Liangyu Chen, Simon Pettersson Fors, Zixian Yan +24

The realization of fault-tolerant quantum computing requires the execution of quantum error-correction (QEC) schemes, to mitigate the fragile nature of qubits. In this context, to…