Exhibition

Reconfigurable Ge quantum-dot array for CMOS integrable and scalable qubit circuits (RGIQC)

Technology Introduction:
Technology Introduction:
Our GIQC features engineering advantages of accurate control over the spatial placement, spherical shapes and tunable sizes of Ge QDs using CMOS approach. Our proposed Ge-QDs array approach offers a multi-dimensional parameter space for engineering qubits and sensors for high-temperature operation with scalability and reconfigurability, as evidenced by characteristic gate-controlled hexagonal-shaped charge states and Coulomb blockade stability diagram.
Industry Applicability:
Quantum computing is envisaged to solve certain types of data-massive problems (AI, cryptography, big data, materials, and medicine) that cannot be achieved by using classical computers alone. A fully CMOS implementation of semiconductor qubits is an appealing solution to achieve large-scale, commercial quantum computers by leveraging robust CMOS manufacturing and advanced IC technologies.
Industrial Applications:
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National Yang Ming Chiao Tung University

National Yang Ming Chiao Tung University (NYCU) was established on February 1, 2021, through the merger of National Chiao Tung University and National Yang Ming University. By integrating Chiao Tung’s strengths in information, communications, and engineering technologies with Yang Ming’s expertise in biomedical research, NYCU is committed to transcending disciplinary boundaries. The university advances interdisciplinary fields such as digital medicine, bioinformatics, smart technologies, and biomedical applications, while cultivating innovative, globally competitive talent and addressing complex real-world challenges.

Contact Information

Name:-
Tel:03-571-2121 #54210
Address:No. 75, Boai Street, Hsinchu 300, Taiwan, ROC
Email

Additional Information

Pavilion:Future Tech Quantum Technology FI03
Exhibiting Entity:National Science and Technology Council
Application Category:Electronics and Optoelectronics
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