Special Breakthrough Prize in Fundamental Physics Awarded for Detection of Gravitational Waves

A Special Breakthrough Prize in Fundamental Physics was announced in May in recognition of the detection of gravitational waves by LIGO, the Laser Interferometer Gravitational-wave Observatory. Professors Alessandra Buonanno and Peter Shawhan of UMD Physics, as well as researchers Yi Pan and Philip Graff and graduate students Min-A Cho and Cregg Yancey, were contributors to the discovery.

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CNAM Research Highlighted in NIST Annual Report

Two recent publications involving neutron scattering experiments performed at the NIST Center for Neutron Research have been highlighted in the 2015 NCNR Annual Report. The studies, involving a multi-disciplinary collaboration between CNAM members J. Paglione (physics), E.E. Rodriguez (chemistry) and NIST Fellow J.W. Lynn, are focused on superconductivity and magnetism in iron-based materials and the half-Heusler ternary system.

Quantum Cycles Power Cold-atom Pump

The idea of a pump is at least as old as the ancient Greek philosopher and scientist Archimedes. More than 2000 years ago, Archimedes allegedly invented a corkscrew pump (link is external) that could lift water up an incline with the turn of a handle. Versions of the ancient invention still bear his name and are used today in agriculture and industry.

Modern pumps have achieved loftier feats. For instance, in the late 1990s, NIST developed a device that could pump individual electrons, part of a potential new standard for measuring capacitance (link is external).

While pumps can be operated mechanically, electrically or via any other source of energy, they all share the common feature of being driven by a periodic action. In the Archimedean pump, that action is a full rotation of the handle, which draws up a certain volume of water. For the NIST electron pump, it is a repeating pattern of voltage signals, which causes electrons to hop one at a time between metallic islands.

But physicists have sought for decades to build a different kind of pump—one driven by the same kind of periodic action but made possible only by the bizarre rules of quantum mechanics. Owing to their physics, these pumps would be immune to certain imperfections in their fabrication.

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