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[[file:Wang Ya.JPG|thumb|x300px|Prof. Wang, Ya (University of Science and Technology of China)]]
[[file:Wang_Ya.JPG|thumb|x300px|Prof. Wang, Ya (University of Science and Technology of China)]]


Ya Wang is a Professor of Physics in the Department of Modern Physics at the University of Science and Technology of China (USTC).
Ya Wang is a Professor of Physics in the Department of Modern Physics at the University of Science and Technology of China (USTC).
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His recent interest focus on developing techniques to build a diamond based scalable quantum network, including diamond CVD growth and fabrication technique to get good quality Nitrogen Vacancy center in diamond, microwave and optical control technique to realize high-fidelity entangled state in hybrid electron-nuclear spin system.  
His recent interest focus on developing techniques to build a diamond based scalable quantum network, including diamond CVD growth and fabrication technique to get good quality Nitrogen Vacancy center in diamond, microwave and optical control technique to realize high-fidelity entangled state in hybrid electron-nuclear spin system.  
==Contributions==
* [[Quantum control of hybrid spin system in diamond: towards scalable quantum network]]


[[Category:Speakers]]
[[Category:Speakers]]
[[Category:Condensed Matter Speakers]]
[[Category:Condensed Matter Speakers]]

Latest revision as of 08:03, 29 August 2019

Prof. Wang, Ya (University of Science and Technology of China)

Ya Wang is a Professor of Physics in the Department of Modern Physics at the University of Science and Technology of China (USTC).

He received his Phd degree in Physics from Hefei National Laboratory for Physical Sciences at the Microscale (USTC) in 2012. Subsequently, he jointed the group of Prof. Joerg Wrachtrup at Stuttgart University as a post-doc. In 2016, he was supported by “Hundred Talents Program” of Chinese Academy of Sciences and appointed as a research fellow at the Department of Modern Physics at USTC. In 2018, he was selected in “Thousand Youth Talent Program” and became a Professor at the same department.

His recent interest focus on developing techniques to build a diamond based scalable quantum network, including diamond CVD growth and fabrication technique to get good quality Nitrogen Vacancy center in diamond, microwave and optical control technique to realize high-fidelity entangled state in hybrid electron-nuclear spin system.

Contributions