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Semiconductor spin qubits
The spin degree of freedom of an electron or a nucleus is one of the most basic properties of
nature and functions as an excellent qubit, as it provides a natural two-level system that is …
nature and functions as an excellent qubit, as it provides a natural two-level system that is …
A two-qubit gate between phosphorus donor electrons in silicon
Electron spin qubits formed by atoms in silicon have large (tens of millielectronvolts) orbital
energies and weak spin–orbit coupling, giving rise to isolated electron spin ground states …
energies and weak spin–orbit coupling, giving rise to isolated electron spin ground states …
Magnon blockade in a hybrid ferromagnet-superconductor quantum system
ZX Liu, H **ong, Y Wu - Physical Review B, 2019 - APS
The implementation of a single magnon level quantum manipulation is one of the
fundamental targets in quantum magnetism with a significant practical relevance for …
fundamental targets in quantum magnetism with a significant practical relevance for …
Experimental realization of an extended Fermi-Hubbard model using a 2D lattice of dopant-based quantum dots
The Hubbard model is an essential tool for understanding many-body physics in condensed
matter systems. Artificial lattices of dopants in silicon are a promising method for the analog …
matter systems. Artificial lattices of dopants in silicon are a promising method for the analog …
A surface code quantum computer in silicon
The exceptionally long quantum coherence times of phosphorus donor nuclear spin qubits
in silicon, coupled with the proven scalability of silicon-based nano-electronics, make them …
in silicon, coupled with the proven scalability of silicon-based nano-electronics, make them …
Silicon quantum processor with robust long-distance qubit couplings
Practical quantum computers require a large network of highly coherent qubits,
interconnected in a design robust against errors. Donor spins in silicon provide state-of-the …
interconnected in a design robust against errors. Donor spins in silicon provide state-of-the …
EUV-induced hydrogen desorption as a step towards large-scale silicon quantum device patterning
Atomically precise hydrogen desorption lithography using scanning tunnelling microscopy
(STM) has enabled the development of single-atom, quantum-electronic devices on a …
(STM) has enabled the development of single-atom, quantum-electronic devices on a …
Facile synthesis of polymeric fluorescent organic nanoparticles based on the self-polymerization of dopamine for biological imaging
Polymeric fluorescent organic nanoparticles (polymer-FONs) have raised considerable
research attention for biomedical applications owing to their advantages as compared with …
research attention for biomedical applications owing to their advantages as compared with …
Lithography for robust and editable atomic-scale silicon devices and memories
At the atomic scale, there has always been a trade-off between the ease of fabrication of
structures and their thermal stability. Complex structures that are created effortlessly often …
structures and their thermal stability. Complex structures that are created effortlessly often …
Spin-Valley Locking for In-Gap Quantum Dots in a MoS2 Transistor
Spins confined to atomically thin semiconductors are being actively explored as quantum
information carriers. In transition metal dichalcogenides (TMDCs), the hexagonal crystal …
information carriers. In transition metal dichalcogenides (TMDCs), the hexagonal crystal …