Deshuo Wan
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View article: A Multi‐Degree‐of‐Freedom Piezoelectric Kinetic Energy Harvester for Self‐Powered Wireless Sensors in Electric Buses
A Multi‐Degree‐of‐Freedom Piezoelectric Kinetic Energy Harvester for Self‐Powered Wireless Sensors in Electric Buses Open
Harvesting energy from the surrounding environment represents a viable method for developing self‐powered systems and realizing that vehicles' low‐power sensors are self‐powered. Nevertheless, existing energy harvesting devices exhibit lim…
View article: A trilinear quantum dot architecture for semiconductor spin qubits
A trilinear quantum dot architecture for semiconductor spin qubits Open
Semiconductor quantum dot spin qubits hold significant potential for scaling to millions of qubits for practical quantum computing applications, as their structure highly resembles the structure of conventional transistors. Since classical…
View article: A self-regulation blades wind energy harvester system for self-powered wireless monitoring sensors
A self-regulation blades wind energy harvester system for self-powered wireless monitoring sensors Open
Using wind energy in the natural environment provides a promising solution for wireless sensor power supply for ecological, meteorological, environmental, and infrastructure monitoring. However, the uncertainty and disorder of natural wind…
View article: Path toward manufacturable superconducting qubits with relaxation times exceeding 0.1 ms
Path toward manufacturable superconducting qubits with relaxation times exceeding 0.1 ms Open
As the superconducting qubit platform matures towards ever-larger scales in the race towards a practical quantum computer, limitations due to qubit inhomogeneity through lack of process control become apparent. To benefit from the advanced…