Spin Qubits & Silicon Quantum Computing
255 papers from Europe PMC
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 1-12 of 255
986/1540 nm Quantum Cutting-Based Perovskite Near-Infrared Light-Emitting Diodes: Overcoming Bottlenecks via a Quantum Dot-Matrix Hybrid Strategy.
Li W, Sun R, Zhou D, Yu Z, Dai L, Wang Y, Wang T, Song R, Wang E, Song R, Zhou S, Song H.
A Hybrid Model with Quantum Feature Map Based on CNN and Vision Transformer for Clinical Support in Diagnosis of Acute Appendicitis.
Ogut Z, Karaduman M, Bozdag PG, Karakose M, Yildirim M.
A review of applications of machine learning in quantum dots research.
Malashin I, Martysyuk D, Nelyub V, Borodulin A, Gantimurov A, Tynchenko V.
A unified quantum rate theory of electron transfer: conceptual advances in quantum electrochemistry.
Bueno PR.
Advancing Room-Temperature Spin Qubits with Naphthalene Diimide-Based Chiral Covalent Organic Frameworks.
Tang C, Sun Z, Wei H, Sun L, Jin Z.
An Enhanced Quantum Image Representation for Improved Intensity Preservation and Fidelity
Nikam V, Sane S.
Application of AI in Cyberattack Detection: A Review
Boateng Y, Mim N, Akhter N, Naha R, Mahanti A, Barros A.
Application of AI in Cyberattack Detection: A Review.
Boateng YJ, Mim NJ, Akhter N, Naha R, Mahanti A, Barros A.
Built-in electric field engineering in Co<sub>2</sub>N<sub>0.67</sub>/CoP heterostructures for glycerol electrooxidation-assisted hydrogen production.
Zhang Y, Qi Y, Zhou H, Zhang Y, Sun J, Ma W, Hu J, Feng L, Yu F.
Combined Confocal Dynamic Light Scattering and Fluorescence Correlation Spectroscopy as an Advanced Technique to Characterize Colloidal Quantum Dot-Gold Nanoparticle Hybrid Systems.
Bauer P, Dabbous A, Pairis S, Maurel V, Dubois F, Barbara A.
Concurrent influence of magnetic field and temperature on the quantum capacitance of silicene and germanene.
Muoi D.
Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
Peña LF, Brickson MI, Rovaris F, Dycus JH, McDonald A, Piontkowski ZT, Ruzindana JB, Bradicich AM, Bethke D, Scott R, Beechem TE, Montalenti F, Jacobson NT, Bussmann E.