Turnitin
降AI改写
早检测系统
早降重系统
Turnitin-UK版
万方检测-期刊版
维普编辑部版
Grammarly检测
Paperpass检测
checkpass检测
PaperYY检测
A single hole spin with enhanced coherence in natural silicon
Semiconductor spin qubits based on spin–orbit states are responsive to electric field
excitations, allowing for practical, fast and potentially scalable qubit control. Spin electric …
excitations, allowing for practical, fast and potentially scalable qubit control. Spin electric …
Silicon spin qubits from laboratory to industry
Quantum computation (QC) is one of the most challenging quantum technologies that
promise to revolutionize data computation in the long-term by outperforming the classical …
promise to revolutionize data computation in the long-term by outperforming the classical …
Probing the limits of gate-based charge sensing
Quantum computation requires a qubit-specific measurement capability to readout the final
state of individual qubits. Promising solid-state architectures use external readout …
state of individual qubits. Promising solid-state architectures use external readout …
CMOS compatibility of semiconductor spin qubits
Several domains of society will be disrupted once millions of high-quality qubits can be
brought together to perform fault-tolerant quantum computing (FTQC). All quantum …
brought together to perform fault-tolerant quantum computing (FTQC). All quantum …
Charge detection in an array of CMOS quantum dots
The recent development of arrays of quantum dots in semiconductor nanostructures
highlights the progress of quantum devices toward a large scale. However, how to realize …
highlights the progress of quantum devices toward a large scale. However, how to realize …
Spin readout of a CMOS quantum dot by gate reflectometry and spin-dependent tunneling
Silicon spin qubits are promising candidates for realizing large-scale quantum processors,
benefitting from a magnetically quiet host material and the prospects of leveraging the …
benefitting from a magnetically quiet host material and the prospects of leveraging the …
Electrically driven electron spin resonance mediated by spin–valley–orbit coupling in a silicon quantum dot
The ability to manipulate electron spins with voltage-dependent electric fields is key to the
operation of quantum spintronics devices, such as spin-based semiconductor qubits. A …
operation of quantum spintronics devices, such as spin-based semiconductor qubits. A …
Electrical Control of g-Factor in a Few-Hole Silicon Nanowire MOSFET
Hole spins in silicon represent a promising yet barely explored direction for solid-state
quantum computation, possibly combining long spin coherence, resulting from a reduced …
quantum computation, possibly combining long spin coherence, resulting from a reduced …
Quantum transport in 40-nm MOSFETs at deep-cryogenic temperatures
In this letter, we characterize the electrical properties of commercial bulk 40-nm MOSFETs at
room and deep cryogenic temperatures, with a focus on quantum information processing …
room and deep cryogenic temperatures, with a focus on quantum information processing …
Fast gate-based readout of silicon quantum dots using Josephson parametric amplification
Spins in silicon quantum devices are promising candidates for large-scale quantum
computing. Gate-based sensing of spin qubits offers a compact and scalable readout with …
computing. Gate-based sensing of spin qubits offers a compact and scalable readout with …