Spin Qubits & Silicon Quantum Computing
3,749 papers
Spin Qubits & Silicon Quantum Computing Research Context
This Quantum Articles category organizes published quantum research papers so readers can browse focused work by topic, source, and year.
Showing 2845-2856 of 3,749
Corrigendum: Quantum State Transmission in a Superconducting Charge Qubit-Atom Hybrid.
Yu D, Valado MM, Hufnagel C, Kwek LC, Amico L, Dumke R.
Device Architecture for Coupling Spin Qubits Via an Intermediate Quantum State
X. G. Croot, S. J. Pauka, J. D. Watson, G. C. Gardner, S. Fallahi, M. J. Manfra, D. J. Reilly
Effects of Size and Distribution of Silver Nanoparticles on Directional Fluorescence Emission Enhancement
Zhi-Hui Chen, Lina He, Yang Wang, Zhixing Gan
Efficient multiparty quantum key agreement with collective detection.
Huang W, Su Q, Liu B, He YH, Fan F, Xu BJ.
Environmentally Mediated Coherent Control of a Spin Qubit in Diamond.
Lillie SE, Broadway DA, Wood JDA, Simpson DA, Stacey A, Tetienne JP, Hollenberg LCL.
Fisher information of a single qubit interacts with a spin-qubit in the presence of a magnetic field
N. Metwally
Frequency Feedback for Two-Photon Interference from Separate Quantum Dots
Michael Zopf, Tobias Macha, Robert Keil, Eduardo Uruñuela, Yan Chen, Wolfgang Alt, Lothar Ratschbacher, Fei Ding, Dieter Meschede, Oliver G. Schmidt
Fundamental intrinsic lifetimes in semiconductor self-assembled quantum dots
Wen Xiong, Jun-Wei Luo, Xiulai Xu, Ming Gong, Shu-ShenLi, Guang-CanGuo
Ge/Si core/shell quantum dots in alumina: tuning the optical absorption by the core and shell size
Nekić Nikolina, Sancho-Parramon Jordi, Bogdanović-Radović Ivančica, Grenzer Jörg, Hübner René, Bernstorff Sigrid, Ivanda Mile, Buljan Maja
Growth of room temperature ferromagnetic Ge1-xMnx quantum dots on hydrogen passivated Si (100) surfaces
Daniele Gastaldo, Gianluca Conta, Marco Coïsson, Giampiero Amato, Paola Tiberto, Paolo Allia
Influence of Organic Molecules on the Luminescent Properties of Composites Based on CdS Quantum Dots
V. A. Smyntyna, V. M. Skobeeva, K. A. Verheles, M. V. Malushin
Interplay of morphology, composition, and optical properties of InP-based quantum dots emitting at the <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML"><mml:mrow><mml:mn>1.55</mml:mn><mml:mspace width="0.28em"/><mml:mi>μ</mml:mi><mml:mi mathvariant="normal">m</mml:mi></mml:mrow></mml:math> telecom wavelength
C. Carmesin, M. Schowalter, M. Lorke, D. Mourad, T. Grieb, K. Müller-Caspary, M. Yacob, J. P. Reithmaier, M. Benyoucef, A. Rosenauer, F. Jahnke