Quantum sensing and applications for physics
Thursday 30 October 2025 -
09:00
Monday 27 October 2025
Tuesday 28 October 2025
Wednesday 29 October 2025
Thursday 30 October 2025
09:30
Registration and Welcome Coffee
Registration and Welcome Coffee
09:30 - 10:00
Room: Chien-Shiung Building (Physics Building) room 209
10:00
Welcome and Purpose of the Mini-Workshop
-
Masashi Hazumi
(
National Central University
)
Welcome and Purpose of the Mini-Workshop
Masashi Hazumi
(
National Central University
)
10:00 - 10:10
Room: Chien-Shiung Building (Physics Building) room 209
10:10
Enhancing the Dynamic Range of Quantum Sensing via Quantum Circuit Learning
-
Yuichiro Matsuzaki
(
Chuo University
)
Enhancing the Dynamic Range of Quantum Sensing via Quantum Circuit Learning
Yuichiro Matsuzaki
(
Chuo University
)
10:10 - 11:10
Room: Chien-Shiung Building (Physics Building) room 209
abstract: Quantum metrology is a promising application of quantum technologies, enabling the precise measurement of weak external fields at a local scale. In typical quantum sensing protocols, a qubit interacts with an external field, and the amplitude of the field is estimated by analyzing the expectation value of a measured observable. Sensitivity can, in principle, be enhanced by increasing the number of qubits within a fixed volume, thereby maintaining spatial resolution. However, at high qubit densities, inter-qubit interactions induce complex many-body dynamics, resulting in multiple oscillations in the expectation value of the observable even for small field amplitudes. This ambiguity reduces the dynamic range of the sensing protocol. We propose a method to overcome the limitation in quantum metrology by adopting a quantum circuit learning framework using a parameterized quantum circuit to approximate a target function by optimizing the circuit parameters. In our method, after the qubits interact with the external field, we apply a sequence of parameterized quantum gates and measure a suitable observable. By optimizing the gate parameters, the expectation value is trained to exhibit a monotonic response within a target range of field amplitudes, thereby eliminating multiple oscillations and enhancing the dynamic range. This method offers a strategy for improving quantum sensing performance in dense qubit systems. Kawaguchi, H., Mori, Y., Satoh, T., & Matsuzaki, Y. (2025). Enhancing the Dynamic Range of Quantum Sensing via Quantum Circuit Learning. arXiv preprint arXiv:2505.04958.
11:10
Quantum Sensing at the CHRONOS Project
-
Yuki Inoue
(
National Central University
)
Quantum Sensing at the CHRONOS Project
Yuki Inoue
(
National Central University
)
11:10 - 12:10
Room: Chien-Shiung Building (Physics Building) room 209
12:10
Photo session
Photo session
12:10 - 12:20
Room: Chien-Shiung Building (Physics Building) room 209
12:20
Lunch
Lunch
12:20 - 13:30
Room: Chien-Shiung Building (Physics Building) room 209
13:30
Hint of Ultra-Light Axionlike Dark Matter and Future Measurements with Diamond Quantum Sensors
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Masashi Hazumi
(
National Central University
)
Hint of Ultra-Light Axionlike Dark Matter and Future Measurements with Diamond Quantum Sensors
Masashi Hazumi
(
National Central University
)
13:30 - 14:00
Room: Chien-Shiung Building (Physics Building) room 209
14:00
Quantum speed limits and selected applications in quantum many-body physics and quantum information science
-
Jyong-Hao Chen
(
National Central University
)
Quantum speed limits and selected applications in quantum many-body physics and quantum information science
Jyong-Hao Chen
(
National Central University
)
14:00 - 15:00
Room: Chien-Shiung Building (Physics Building) room 209
15:00
Development of Josephson Parametric Amplifiers for Axion Search and Quantum Information Applications
-
Yung-Fu Chen
(
National Central University
)
Development of Josephson Parametric Amplifiers for Axion Search and Quantum Information Applications
Yung-Fu Chen
(
National Central University
)
15:00 - 15:30
Room: Chien-Shiung Building (Physics Building) room 209
15:30
Coffee Break
Coffee Break
15:30 - 16:00
Room: Chien-Shiung Building (Physics Building) room 209
16:00
Quantum Technology Strategy in Taiwan
-
Ming-Jye Wang
(
ASIoP
)
Quantum Technology Strategy in Taiwan
Ming-Jye Wang
(
ASIoP
)
16:00 - 16:30
Room: Chien-Shiung Building (Physics Building) room 209
16:30
Free Discussion on Future Directions
Free Discussion on Future Directions
16:30 - 17:00
Room: Chien-Shiung Building (Physics Building) room 209