Revision history of "Spin and topological states in hybrid semiconducting-Superconducting nanostructures for scalable quantum computation" (Q84340)

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12 October 2024

  • curprev 22:0322:03, 12 October 2024DG Regio talk contribs 66,324 bytes −9 Changed label, description and/or aliases in pt
  • curprev 22:0322:03, 12 October 2024DG Regio talk contribs 66,333 bytes +12 Set a claim value: summary (P836): O objetivo do projeto é projetar nanodispositivos novos em que o estado do spin dos elétrons e dos furos pode ser acoplado aos estados topológicos, e mais servir como um bloco de construção básico para a arquitetura escalável do computador quântico. Tencionamos desenvolver esquemas eficientes e fiáveis para a inicialização, manipulação, acoplamento, armazenamento e leitura de informações quânticas – Qubits – codificadas nesses estados, cumprindo ass...

22 March 2024

6 July 2023

11 June 2023

24 May 2023

2 March 2023

  • curprev 18:5218:52, 2 March 2023DG Regio talk contribs 64,649 bytes +321 Changed label, description and/or aliases in it, da, lv, sk, es, sl, fi, et, hr, ga, sv, fr, cs, lt, el, de, bg, nl, hu, mt, ro, and other parts

25 October 2022

21 October 2022

13 August 2022

  • curprev 17:1317:13, 13 August 2022DG Regio talk contribs 62,243 bytes +39,317 Changed label, description and/or aliases in et, lt, hr, el, sk, fi, hu, cs, lv, ga, sl, bg, mt, pt, da, ro, sv, nl, fr, de, it, es, and other parts: Adding translations: et, lt, hr, el, sk, fi, hu, cs, lv, ga, sl, bg, mt, pt, da, ro, sv,

19 January 2022

15 January 2022

16 December 2021

7 December 2021

30 November 2021

  • curprev 16:2516:25, 30 November 2021DG Regio talk contribs 14,410 bytes +2,008 Created claim: summary (P836): L’objectif du projet est de concevoir de nouveaux nanodispositifs dans lesquels l’état de spin des électrons et des trous peut être couplé à des états topologiques, et servir de base pour l’architecture quantique évolutive de l’ordinateur. Nous prévoyons de développer des systèmes efficaces et fiables pour l’initialisation, la manipulation, le couplage, le stockage et la lecture d’informations quantiques — Qubits — codées dans de tels états, rép...
  • curprev 16:2516:25, 30 November 2021DG Regio talk contribs 12,402 bytes +190 Changed label, description and/or aliases in fr: translated_label

29 October 2020

14 October 2020

  • curprev 12:3612:36, 14 October 2020DG Regio talk contribs 12,652 bytes +176 Changed label, description and/or aliases in 1 language: translated_label
  • curprev 12:3612:36, 14 October 2020DG Regio talk contribs 12,476 bytes −118 Changed label, description and/or aliases in 1 language: remove_english_label
  • curprev 12:3612:36, 14 October 2020DG Regio talk contribs 12,594 bytes +1,818 Created claim: summary (P836): The aim of the project is to design novel nanodevices in which spin state of electrons and holes can be coupled to topological states, and further serve as a basic building blocks for scalable quantum computer architecture. We plan to develop efficient and reliable schemes for initialisation, manipulation, coupling, storing and read-out of quantum information – Qubits – encoded in such states, thus fulfilling physical requirements for scalable q...
  • curprev 12:3612:36, 14 October 2020DG Regio talk contribs 10,776 bytes −1,093 Removed claim: summary (P836): The aim of the project is to design novel features in grounds of electricity and further serve as a basic building blocks for cohesive architecture.In this plan, it represents an efficient and relable schemes for iniation, manipulation, testing, storming and withdrawal of quantum information — qubits — Encoded in solid states, thus realising physical requirements for consumption aggregation.The investigated systems are based on semi-conductor...

9 June 2020

7 June 2020

26 March 2020

4 March 2020

  • curprev 10:0710:07, 4 March 2020DG Regio talk contribs 10,578 bytes +1,093 Created claim: summary (P836): The aim of the project is to design novel features in grounds of electricity and further serve as a basic building blocks for cohesive architecture.In this plan, it represents an efficient and relable schemes for iniation, manipulation, testing, storming and withdrawal of quantum information — qubits — Encoded in solid states, thus realising physical requirements for consumption aggregation.The investigated systems are based on semi-conductor in...

18 February 2020

8 February 2020

31 January 2020

14 January 2020