Search Results - "HENDRICKX, W"

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  1. 1

    Fast two-qubit logic with holes in germanium by Hendrickx, N. W., Franke, D. P., Sammak, A., Scappucci, G., Veldhorst, M.

    Published in Nature (London) (23-01-2020)
    “…Universal quantum information processing requires the execution of single-qubit and two-qubit logic. Across all qubit realizations 1 , spin qubits in quantum…”
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  2. 2

    A single-hole spin qubit by Hendrickx, N. W., Lawrie, W. I. L., Petit, L., Sammak, A., Scappucci, G., Veldhorst, M.

    Published in Nature communications (10-07-2020)
    “…Qubits based on quantum dots have excellent prospects for scalable quantum technology due to their compatibility with standard semiconductor manufacturing…”
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  3. 3

    Universal quantum logic in hot silicon qubits by Petit, L., Eenink, H. G. J., Russ, M., Lawrie, W. I. L., Hendrickx, N. W., Philips, S. G. J., Clarke, J. S., Vandersypen, L. M. K., Veldhorst, M.

    Published in Nature (London) (01-04-2020)
    “…Quantum computation requires many qubits that can be coherently controlled and coupled to each other 1 . Qubits that are defined using lithographic techniques…”
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  4. 4

    Simultaneous single-qubit driving of semiconductor spin qubits at the fault-tolerant threshold by Lawrie, W. I. L., Rimbach-Russ, M., Riggelen, F. van, Hendrickx, N. W., Snoo, S. L. de, Sammak, A., Scappucci, G., Helsen, J., Veldhorst, M.

    Published in Nature communications (19-06-2023)
    “…Practical Quantum computing hinges on the ability to control large numbers of qubits with high fidelity. Quantum dots define a promising platform due to their…”
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  5. 5

    Gate-controlled quantum dots and superconductivity in planar germanium by Hendrickx, N. W., Franke, D. P., Sammak, A., Kouwenhoven, M., Sabbagh, D., Yeoh, L., Li, R., Tagliaferri, M. L. V., Virgilio, M., Capellini, G., Scappucci, G., Veldhorst, M.

    Published in Nature communications (19-07-2018)
    “…Superconductors and semiconductors are crucial platforms in the field of quantum computing. They can be combined to hybrids, bringing together physical…”
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  6. 6

    Quantum dot arrays in silicon and germanium by Lawrie, W. I. L., Eenink, H. G. J., Hendrickx, N. W., Boter, J. M., Petit, L., Amitonov, S. V., Lodari, M., Paquelet Wuetz, B., Volk, C., Philips, S. G. J., Droulers, G., Kalhor, N., van Riggelen, F., Brousse, D., Sammak, A., Vandersypen, L. M. K., Scappucci, G., Veldhorst, M.

    Published in Applied physics letters (24-02-2020)
    “…Electrons and holes confined in quantum dots define excellent building blocks for quantum emergence, simulation, and computation. Silicon and germanium are…”
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  7. 7

    Spin Relaxation Benchmarks and Individual Qubit Addressability for Holes in Quantum Dots by Lawrie, W. I. L, Hendrickx, N. W, van Riggelen, F, Russ, M, Petit, L, Sammak, A, Scappucci, G, Veldhorst, M

    Published in Nano letters (14-10-2020)
    “…We investigate hole spin relaxation in the single- and multihole regime in a 2 × 2 germanium quantum dot array. We find spin relaxation times T 1 as high as 32…”
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  8. 8

    Sweet-spot operation of a germanium hole spin qubit with highly anisotropic noise sensitivity by Hendrickx, N. W., Massai, L., Mergenthaler, M., Schupp, F. J., Paredes, S., Bedell, S. W., Salis, G., Fuhrer, A.

    Published in Nature materials (01-07-2024)
    “…Spin qubits defined by valence band hole states are attractive for quantum information processing due to their inherent coupling to electric fields, enabling…”
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  9. 9

    Coherent spin qubit shuttling through germanium quantum dots by van Riggelen-Doelman, Floor, Wang, Chien-An, de Snoo, Sander L., Lawrie, William I. L., Hendrickx, Nico W., Rimbach-Russ, Maximilian, Sammak, Amir, Scappucci, Giordano, Déprez, Corentin, Veldhorst, Menno

    Published in Nature communications (08-07-2024)
    “…Quantum links can interconnect qubit registers and are therefore essential in networked quantum computing. Semiconductor quantum dot qubits have seen…”
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  10. 10

    Probing resonating valence bonds on a programmable germanium quantum simulator by Wang, Chien-An, Déprez, Corentin, Tidjani, Hanifa, Lawrie, William I. L., Hendrickx, Nico W., Sammak, Amir, Scappucci, Giordano, Veldhorst, Menno

    Published in npj quantum information (17-06-2023)
    “…Simulations using highly tunable quantum systems may enable investigations of condensed matter systems beyond the capabilities of classical computers. Quantum…”
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  11. 11

    Phase flip code with semiconductor spin qubits by van Riggelen, F., Lawrie, W. I. L., Russ, M., Hendrickx, N. W., Sammak, A., Rispler, M., Terhal, B. M., Scappucci, G., Veldhorst, M.

    Published in npj quantum information (27-10-2022)
    “…The fault-tolerant operation of logical qubits is an important requirement for realizing a universal quantum computer. Spin qubits based on quantum dots have…”
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  12. 12

    Bone mineral density changes in the graft after acetabular impaction bone grafting in primary and revision hip surgery: A 2-year prospective follow-up by Gerhardt, Davey M J M, De Visser, Enrico, Hendrickx, Baudewijn W, Schreurs, Berend W, Van Susante, Job L C

    Published in Acta orthopaedica (04-05-2018)
    “…Background and purpose — Impaction bone grafting (IBG) is an established method in hip revision surgery to reconstruct loss of bone stock. There is limited…”
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  13. 13

    Impact of interface traps on charge noise and low-density transport properties in Ge/SiGe heterostructures by Massai, Leonardo, Hetényi, Bence, Mergenthaler, Matthias, Schupp, Felix J., Sommer, Lisa, Paredes, Stephan, Bedell, Stephen W., Harvey-Collard, Patrick, Salis, Gian, Fuhrer, Andreas, Hendrickx, Nico W.

    Published in Communications materials (01-01-2024)
    “…Hole spins in Ge/SiGe heterostructures have emerged as an interesting qubit platform with favourable properties such as fast electrical control and…”
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  14. 14

    A discussion of "Rational approximation of frequency domain responses by vector fitting" by Hendrickx, W., Dhaene, T.

    Published in IEEE transactions on power systems (01-02-2006)
    “…Vector fitting (VF) is a popular iterative rational approximation technique for sampled data in the frequency domain. VF is nowadays widely investigated and…”
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  15. 15

    A four-qubit germanium quantum processor by Hendrickx, Nico W., Lawrie, William I. L., Russ, Maximilian, van Riggelen, Floor, de Snoo, Sander L., Schouten, Raymond N., Sammak, Amir, Scappucci, Giordano, Veldhorst, Menno

    Published in Nature (London) (25-03-2021)
    “…The prospect of building quantum circuits 1 , 2 using advanced semiconductor manufacturing makes quantum dots an attractive platform for quantum information…”
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  16. 16

    A spin qubit hiding from the noise by Hendrickx, Nico W., Fuhrer, Andreas

    Published in Nature nanotechnology (01-10-2022)
    “…Sweet spot operation of a silicon hole spin qubit limits the impact of charge noise and improves qubit coherence, circumventing the typical trade-off between…”
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  17. 17

    FDG-PET/CT Limited to the Thorax and Upper Abdomen for Staging and Management of Lung Cancer by Arens, Anne I J, Postema, Jan W A, Schreurs, Wendy M J, Lafeber, Albert, Hendrickx, Baudewijn W, Oyen, Wim J G, Vogel, Wouter V

    Published in PloS one (24-08-2016)
    “…This study evaluates the diagnostic accuracy of [F-18]-fluorodeoxyglucose-positron emission tomography/computed tomography (FDG-PET/CT) of the chest/upper…”
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    Shared control of a 16 semiconductor quantum dot crossbar array by Borsoi, Francesco, Hendrickx, Nico W., John, Valentin, Meyer, Marcel, Motz, Sayr, van Riggelen, Floor, Sammak, Amir, de Snoo, Sander L., Scappucci, Giordano, Veldhorst, Menno

    Published in Nature nanotechnology (01-01-2024)
    “…The efficient control of a large number of qubits is one of the most challenging aspects for practical quantum computing. Current approaches in solid-state…”
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