Searched for: author%3A%22Vandersypen%2C+L.M.K.%22
(1 - 9 of 9)
document
Harvey-Collard, P. (author), Dijkema, J.J. (author), Zheng, G. (author), Sammak, A. (author), Scappucci, G. (author), Vandersypen, L.M.K. (author)
We report the coherent coupling of two electron spins at a distance via virtual microwave photons. Each spin is trapped in a silicon double quantum dot at either end of a superconducting resonator, achieving spin-photon couplings up to around gs/2p=40 MHz. As the two spins are brought into resonance with each other, but detuned from the...
journal article 2022
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Zwerver, A.M.J. (author), Krähenmann, T.S. (author), Amitonov, S. (author), Boter, J.M. (author), Droulers, G. (author), Lodari, M. (author), Samkharadze, Nodar (author), Zheng, G. (author), Scappucci, G. (author), Veldhorst, M. (author), Vandersypen, L.M.K. (author)
Full-scale quantum computers require the integration of millions of qubits, and the potential of using industrial semiconductor manufacturing to meet this need has driven the development of quantum computing in silicon quantum dots. However, fabrication has so far relied on electron-beam lithography and, with a few exceptions, conventional...
journal article 2022
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Paquelet Wuetz, B. (author), Stehouwer, L.E.A. (author), Zwerver, A.M.J. (author), Philips, S.G.J. (author), Xue, X. (author), Zheng, G. (author), Lodari, M. (author), Samkharadze, Nodar (author), Sammak, A. (author), Vandersypen, L.M.K. (author), Scappucci, G. (author)
Electron spins in Si/SiGe quantum wells suffer from nearly degenerate conduction band valleys, which compete with the spin degree of freedom in the formation of qubits. Despite attempts to enhance the valley energy splitting deterministically, by engineering a sharp interface, valley splitting fluctuations remain a serious problem for qubit...
journal article 2022
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Prabowo, B. (author), Zheng, G. (author), Mehrpoo, M. (author), Patra, B (author), Harvey-Collard, P. (author), Dijkema, J.J. (author), Sammak, Amir (author), Scappucci, G. (author), Charbon-Iwasaki-Charbon, E. (author), Sebastiano, F. (author), Vandersypen, L.M.K. (author), Babaie, M. (author)
Quantum computers (QC) promise to solve certain computational problems exponentially faster than a classical computer due to the superposition and entanglement properties of quantum bits (qubits). Among several qubit technologies, spin qubits are a promising candidate for large-scale QC, since (1) they have a small footprint allowing them to...
conference paper 2021
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Harvey-Collard, P. (author), Zheng, G. (author), Dijkema, J.J. (author), Samkharadze, Nodar (author), Sammak, A. (author), Scappucci, G. (author), Vandersypen, L.M.K. (author)
Circuit quantum electrodynamics (QED) employs superconducting microwave resonators as quantum buses. In circuit QED with semiconductor quantum-dot-based qubits, increasing the resonator impedance is desirable as it enhances the coupling to the typically small charge dipole moment of these qubits. However, the gate electrodes necessary to form...
journal article 2020
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Zheng, G. (author), Samkharadze, Nodar (author), Noordam, M.L. (author), Kalhor, N. (author), Brousse, D. (author), Sammak, A. (author), Mendes, U. C. (author), Blais, A. (author), Scappucci, G. (author), Vandersypen, L.M.K. (author)
We demonstrate the strong coupling between a single electron spin in silicon and a single photon in a superconducting microwave cavity. Using the same cavity we perform rapid high-fidelity single-shot readout of two-electron spin states.
conference paper 2019
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Zheng, G. (author), Samkharadze, Nodar (author), Noordam, M.L. (author), Kalhor, N. (author), Brousse, D. (author), Sammak, A. (author), Scappucci, G. (author), Vandersypen, L.M.K. (author)
Silicon spin qubits are one of the leading platforms for quantum computation<sup>1,2</sup>. As with any qubit implementation, a crucial requirement is the ability to measure individual quantum states rapidly and with high fidelity. Since the signal from a single electron spin is minute, the different spin states are converted to different...
journal article 2019
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Samkharadze, Nodar (author), Zheng, G. (author), Kalhor, N. (author), Brousse, D. (author), Sammak, A. (author), Mendes, U. C. (author), Blais, A. (author), Scappucci, G. (author), Vandersypen, L.M.K. (author)
Long coherence times of single spins in silicon quantum dots make these systems highly attractive for quantum computation, but how to scale up spin qubit systems remains an open question. As a first step to address this issue, we demonstrate the strong coupling of a single electron spin and a single microwave photon. The electron spin is...
journal article 2018
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Samkharadze, Nodar (author), Bruno, A. (author), Scarlino, P. (author), Zheng, G. (author), Divincenzo, D.P. (author), DiCarlo, L. (author), Vandersypen, L.M.K. (author)
We present superconducting microwave-frequency resonators based on NbTiN nanowires. The small cross section of the nanowires minimizes vortex generation, making the resonators resilient to magnetic fields. Measured intrinsic quality factors exceed 2×105 in a 6-T in-plane magnetic field and 3×104 in a 350-mT perpendicular magnetic field....
journal article 2016
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