Towards a scalable quantum computing platform in the ultrastrong coupling regime
نام نخستين پديدآور
Thi Ha Kyaw
وضعیت نشر و پخش و غیره
محل نشرو پخش و غیره
Cham, Switzerland
نام ناشر، پخش کننده و غيره
Springer
تاریخ نشرو بخش و غیره
2019
مشخصات ظاهری
نام خاص و کميت اثر
xix, 116 p.
ساير جزييات
illustrations (some color)
فروست
عنوان فروست
(Springer theses)
يادداشت کلی
متن يادداشت
"Doctoral thesis accepted by the National University of Singapore, Singapore."
یادداشتهای مربوط به کتابنامه ، واژه نامه و نمایه های داخل اثر
متن يادداشت
Includes bibliographical references
یادداشتهای مربوط به مندرجات
متن يادداشت
Introduction -- Basics of superconducting circuits architecture -- Ultrastrong light-matter interaction -- Quantum error correcting codes in the USC regime -- Quantum memory in the USC regime -- Catalytic quantum Rabi model -- Conclusion and Future Work -- Appendix
بدون عنوان
0
یادداشتهای مربوط به خلاصه یا چکیده
متن يادداشت
The thesis devotes three introductory chapters to outline basic recipes to construct quantum Hamiltonian of an arbitrary superconducting circuit, starting from classical circuit design. Since superconducting circuit is one of the most promising platforms towards a practical quantum computer, anyone who is starting the field would be profoundly benefited from this thesis, and should be able to pick it up timely. The second focus of the introduction is the ultrastrong light-matter interaction (USC), summarizing latest developments in the community. It is then followed by the three main research work comprising- quantum memory in USC, scaling up the 1D circuit to 2D lattice configuration, creation of Noisy Intermediate-Scale Quantum era quantum error correction codes and polariton-mediated qubit-qubit interaction. We believe that the research work detailed in this thesis would eventually lead to development of quantum random access memory which is needed for various quantum machine learning algorithms and applications
موضوع (اسم عام یاعبارت اسمی عام)
موضوع مستند نشده
Quantum computing
موضوع مستند نشده
Computer networks -- Scalability
رده بندی کنگره
شماره رده
QA76
.
889
نشانه اثر
.
K93
2019
نام شخص به منزله سر شناسه - (مسئولیت معنوی درجه اول )
مستند نام اشخاص تاييد نشده
Kyaw, Thi Ha
مبدا اصلی
کشور
Iran
سازمان
University of Tehran. Library of College of Science