Quantum Sensing Experiments with Superconducting Qubits

Quantum Sensing Experiments with Superconducting Qubits
Author: Schneider, Andre
Publsiher: KIT Scientific Publishing
Total Pages: 170
Release: 2021-06-04
Genre: Science
ISBN: 9783731510321

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Quantum sensing is a vast and emerging field enabling in-situ studies of quantum systems and hence the development of quantum hybrid systems. This work creates the fundament of direct superconducting-magnetic hybrid systems by developing a local microwave sensing scheme and studying the influence of a static magnetic field on a superconducting qubit. Finally, a proof-of-principle hybrid system is demonstrated, which opens the path towards superconducting-magnetic quantum circuits.

Superconducting Radiofrequency Technology for Accelerators

Superconducting Radiofrequency Technology for Accelerators
Author: Hasan Padamsee
Publsiher: John Wiley & Sons
Total Pages: 405
Release: 2023-05-15
Genre: Science
ISBN: 9783527414093

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Superconducting Radiofrequency Technology for Accelerators Single source reference enabling readers to understand and master state-of-the-art accelerator technology Superconducting Radiofrequency Technology for Accelerators provides a quick yet thorough overview of the key technologies for current and future accelerators, including those projected to enable breakthrough developments in materials science, nuclear and astrophysics, high energy physics, neutrino research and quantum computing. The work is divided into three sections. The first part provides a review of RF superconductivity basics, the second covers new techniques such as nitrogen doping, nitrogen infusion, oxide-free niobium, new surface treatments, and magnetic flux expulsion, high field Q slope, complemented by discussions of the physics of the improvements stemming from diagnostic techniques and surface analysis as well as from theory. The third part reviews the on-going applications of RF superconductivity in already operational facilities and those under construction such as light sources, proton accelerators, neutron and neutrino sources, ion accelerators, and crab cavity facilities. The third part discusses planned accelerator projects such as the International Linear Collider, the Future Circular Collider, the Chinese Electron Positron Collider, and the Proton Improvement Plan-III facility at Fermilab as well as exciting new developments in quantum computing using superconducting niobium cavities. Written by the leading expert in the field of radiofrequency superconductivity, Superconducting Radiofrequency Technology for Accelerators covers other sample topics such as: Fabrication and processing on Nb-based SRF structures, covering cavity fabrication, preparation, and a decade of progress in the field SRF physics, covering zero DC resistance, the Meissner effect, surface resistance and surface impedance in RF fields, and non-local response of supercurrent N-doping and residual resistance, covering trapped DC flux losses, hydride losses, and tunneling measurements Theories for anti-Q-slope, covering the Xiao theory, the Gurevich theory, non-equilibrium superconductivity, and two fluid model based on weak defects Superconducting Radiofrequency Technology for Accelerators is an essential reference for high energy physicists, power engineers, and electrical engineers who want to understand the latest developments of accelerator technology and be able to harness it to further research interest and practical applications.

Quantum simulation experiments with superconducting circuits

Quantum simulation experiments with superconducting circuits
Author: Braumüller, Jochen
Publsiher: KIT Scientific Publishing
Total Pages: 168
Release: 2018-06-14
Genre: Electronic Book
ISBN: 9783731507802

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Domestic Manufacturing Capabilities for Critical DoD Applications

Domestic Manufacturing Capabilities for Critical DoD Applications
Author: National Academies of Sciences, Engineering, and Medicine,Division on Engineering and Physical Sciences,National Materials and Manufacturing Board
Publsiher: National Academies Press
Total Pages: 109
Release: 2019-11-21
Genre: Computers
ISBN: 9780309494793

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Recent advancements in quantum-enabled systems present a variety of new opportunities and challenges. These technologies are important developments for a variety of computing, communications, and sensing applications. However, many materials and components relevant to quantum-enabled systems exist outside of the United States, and it is important to promote the development of assured domestic sources of materials, manufacturing capabilities, and expertise. The National Academies of Sciences, Engineering, and Medicine convened a 2-day workshop to explore implications and concerns related to the application of quantum-enabled systems in the United States. This workshop focused on quantum-enabled computing systems, quantum communications and networks, and quantum sensing opportunities. Participants explored the path to quantum computing, communications, and networks, opportunities for collaboration, as well as key gaps, supply chain concerns, and security issues. This publication summarizes the presentations and discussions from the workshop.

Quantum Tunneling of Josephson Vortices in High Impedance Long Junctions

Quantum Tunneling of Josephson Vortices in High Impedance Long Junctions
Author: Wildermuth, Matthias Micha
Publsiher: KIT Scientific Publishing
Total Pages: 160
Release: 2023-09-11
Genre: Electronic Book
ISBN: 9783731513032

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In the last decades, superconducting devices have emerged as a promising platform for quantum technologies, including quantum sensing and quantum computing. Their key elements are Josephson junctions, which allow for coherent supercurrent tunneling between two weakly linked superconductors. If such a junction is extended in one direction to a long junction, the superconducting phase difference can vary in space and time and may allow for quantized phase windings that drive supercurrent vortices.

Local Probing of a Superconductor s Quasiparticles and Bosonic Excitations with a Scanning Tunnelling Microscope

Local Probing of a Superconductor   s Quasiparticles and Bosonic Excitations with a Scanning Tunnelling Microscope
Author: Gozlinski, Thomas
Publsiher: KIT Scientific Publishing
Total Pages: 208
Release: 2023-03-24
Genre: Science
ISBN: 9783731512790

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Complementary to scattering techniques, scanning tunnelling microscopy provides atomic-scale real space information about a material's electronic state of matter. State-of-the-art designs of a scanning tunnelling microscope (STM) allow measurements at millikelvin temperatures with unprecedented energy resolution. Therefore, this instrument excels in probing the superconducting state at low temperatures and especially its local quasiparticle excitations as well as bosonic degrees of freedom.

Molecular Motor Based on Single Chiral Tripodal Molecules Studied with STM

Molecular Motor Based on Single Chiral Tripodal Molecules Studied with STM
Author: Skolaut, Julian
Publsiher: KIT Scientific Publishing
Total Pages: 164
Release: 2023-09-14
Genre: Electronic Book
ISBN: 9783731512479

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This work presents a single molecular motor driven by the current in an STM. Its chiral functional group is supposed to perform a rotation in a preferred direction, proven by Binomial tests to be statistically significant. The rotation is proposedly driven by the chiral-induced spin selectivity effect (CISS). However, the studies of the rotation on the dependence on the lateral tip position, voltage and current indicate that he CISS is unlikely to cause the preferred rotation direction.

Light Emission from Single Self decoupled Molecules in a Scanning Tunnelling Microscope

Light Emission from Single Self decoupled Molecules in a Scanning Tunnelling Microscope
Author: Rai, Vibhuti Narayan
Publsiher: KIT Scientific Publishing
Total Pages: 150
Release: 2022-10-04
Genre: Science
ISBN: 9783731512011

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In this work, a clear pathway is presented to achieve well-defined electronically decoupled chromophores from metallic leads without requiring additional insulating layers. To study such self-decoupled molecules, STM equipped with an efficient light detection setup has been used. Results show that the chromophores mounted on tripodal molecular platforms adsorbed on a gold surface present well-defined and efficient electroluminescence down to the single-molecule level.