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Boosting Superconductivity with Field and Pressure

Details
Published: 25 June 2021

Magnetic field induced superconductivity is a fascinating quantum phenomenon, whose origin is yet to be fully understood. The recently discovered spin triplet superconductor, UTe2, exhibits two such superconducting phases, with the second one reentering in the magnetic field of 45 T and persisting up to 65 T. More surprisingly, in order to induce this superconducting phase, the magnetic field has to be applied in a special angle range, not along any high symmetry crystalline direction. The teams of QMC faculty Nick Butch and Johnpierre Paglione have investigated the evolution of this exotic superconducting phase under pressure, shedding more light on the mechanism of reentrant superconductivity This work has been posted on arXiv.

 

Kollár wins NSF CAREER competition

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Published: 21 June 2021

Congratulations to QMC faculty member Alicia Kollár on her NSF CAREER Award for a proposal aimed at developing a new window into the physics of particles interacting inside of materials. Way to go Alicia!   https://jqi.umd.edu/news/kollar-receives-national-science-foundation-career-award

QMC Staff Wins Dean's Award

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Published: 14 May 2021

QMC Engineer Doug Bensen has been awarded the Dean's Outstanding Employee Award for his dedication and effort to assist all manner of technical challenges in our center and other parts of the physics department. Congrats Doug - well deserved!! You can read an excellent story about Doug here.

Global Policies for Quantum Technology

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Published: 20 April 2021

A new report by CIFAR overviews quantum technology R&D strategies and initiatives in a selection of countries with comprehensive policy measures. The report overviews the three primary areas of quantum technologies, then highlights the policy measures taken by different countries to support quantum R&D. Download the full report here.

 

 

 

Millisecond coherence in a superconducting qubit

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Published: 16 March 2021

The team of QMC faculty member Vlad Manucharyan have reported a record coherence time for their fluxonium qubit, achieving an average single-qubit gate fidelity above 0.9999, surpassing that of any other solid-state quantum system. Combined with recent demonstrations of two-qubit gates on fluxoniums, this result paves the way for the next generation of quantum processors. See preprint at https://arxiv.org/abs/2103.08578

  1. QMC Coordinator Employment Opportunity
  2. Fundamentals of Quantum Materials Now Published!
  3. UMD-NIST Self-Directing AI System Discovers New Material
  4. Going Beyond the Anti-Laser May Enable Long-Range Wireless Power Transfer
  5. Nicholas Butch receives the 2020 Samuel Wesley Stratton Award

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