Hoon Ryu, Ph.D.

Affiliations: 
2011 Electrical and Computer Engineering Purdue University, West Lafayette, IN, United States 
Area:
Electronics and Electrical Engineering, Quantum Physics
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"Hoon Ryu"

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Gerhard Klimeck grad student 2011 Purdue
 (Electronic structure and quantum transport in controlled impurity systems.)
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Publications

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Ryu H, Cho KW, Ryu J. (2025) On the feasibility of a quantum sensing protocol designed with electrically controlled spins in silicon quantum dots. Rsc Advances. 15: 12067-12075
Kang JH, Yoon T, Lee C, et al. (2024) Design of high-performance entangling logic in silicon quantum dot systems with Bayesian optimization. Scientific Reports. 14: 10080
Ryu H, Kang JH. (2022) Devitalizing noise-driven instability of entangling logic in silicon devices with bias controls. Scientific Reports. 12: 15200
Kang JH, Ryu J, Ryu H. (2020) Exploring the behaviors of electrode-driven Si quantum dot systems: from charge control to qubit operations. Nanoscale
Kim I, Kim HS, Ryu H. (2019) Piezoresistivity of InAsP Nanowires: Role of Crystal Phases and Phosphorus Atoms in Strain-Induced Channel Conductances. Molecules (Basel, Switzerland). 24
Ryu H, Hong S, Kim HS, et al. (2019) Role of Quantum Confinement in 10 nm Scale Perovskite Optoelectronics. The Journal of Physical Chemistry Letters. 2745-2752
Ryu H, Kwon O. (2018) Fast, energy-efficient electronic structure simulations for multi-million atomic systems with GPU devices Journal of Computational Electronics. 17: 698-706
Choi S, Kim WY, Yeom MS, et al. (2018) On the achievement of high fidelity and scalability for large-scale diagonalizations in grid-based DFT simulations International Journal of Quantum Chemistry. 118: e25622
Ryu H. (2016) A multi-subband Monte Carlo study on dominance of scattering mechanisms over carrier transport in sub-10-nm Si nanowire FETs. Nanoscale Research Letters. 11: 36
Ryu H, Jeong Y, Kang J, et al. (2016) Time-efficient simulations of tight-binding electronic structures with Intel Xeon PhiTM many-core processors Computer Physics Communications. 209: 79-87
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