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Brookhaven dedicates “brightest beacon at the frontiers of discovery”

The National Synchrotron Light Source II (NSLS-II) at Brookhaven Laboratory was dedicated February 6. NSLS-II, which produces extremely bright beams of X-ray, ultraviolet and infrared light, will examine a wide range of materials, including superconductors and catalysts, geological samples, and biological proteins, to accelerate advances in energy, environmental science and...

First prototypes of high-voltage feedthrough

With the delivery of two feedthrough samples for the 6 pin 30 KV rating, identified as a type D variant, Ceramtec North America Corporation (US) has begun to solve one of the big challenges at ITER.

What’s new for LHC Run II

Since shutting down in early 2013, the LHC and its detectors have undergone a multitude of upgrades and repairs. When the particle accelerator restarts, it will collide protons at an unprecedented energy: 13 trillion electron volts. The upgraded capabilities of the ATLAS, CMS, ALICE and LHCb detectors—plus the LHC’s extra...

Potential of molybdenum disulfide for extreme-temperature electronics

Many industries are calling for electronics that can operate reliably in a harsh environment, including extreme temperatures above 200°C. A team of researchers from the University of California, Riverside and Rensselaer Polytechnic Institute discovered that molybdenum disulfide, a semiconductor material, may be a promising candidate to make thin-film transistors for...

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Dewar

A dewar is a type of cryostat named after Sir James Dewar, the researcher who first developed the concept of a vacuum insulated container with silvered walls to reflect thermal radiation. Dewar was the first to liquefy hydrogen, and he created the device to store his discovery. The thermos bottle...

Stirling and Gifford-McMahon Cryocoolers

Stirling and Gifford-McMahon (GM) cryocoolers are two of the most commonly used cryocoolers in cryogenics. Both devices have a significant industrial base and operate at a wide range of temperatures and capacities. The thermodynamic cycles for both of these cryocoolers are quite similar. The Stirling cycle consists of a compressor,...

Liquefied Natural Gas (LNG)

A significant commercial application of cryogenics is the liquefaction, transport and storage of natural gas. Liquefied Natural Gas (LNG) is generally 95 percent methane with a few percent ethane and much lower concentrations of propane and butane. LNG liquefies at 111.6 K. Unlike many applications of cryogenics, the motivation for...

Magnetic Levitation

From http://www.superconductors.org. Magnetic-levitation is an application where superconductors perform extremely well. Transport vehicles such as trains can be made to “float” on strong superconducting magnets, virtually eliminating friction between the train and its tracks. Not only would conventional electromagnets waste much of the electrical energy as heat, they would have...

Superconductivity

From Superpower website. History of Superconductivity Superconductivity was discovered in 1911 by the Dutch physicist, Heike Kammerlingh Onnes when he was able to liquefy helium by cooling it to 4 Kelvin, or -452°F. This enabled him to cool other materials close to absolute zero and investigate their electrical properties. He...

Medical Applications of Cryogenics

Neutron Therapy Cryogenics is at the heart of nuclear accelerators. Accelerators such as Fermilab’s Tevatron make neutron therapy for cancer possible. From Fermilab Today 4/20/09: Fermilab currently offers neutron therapy. But staff at Fermilab designed and built the proton accelerator used by the nation’s first hospital-based treatment center to use...

Nuclear Physics

Al Zeller National Superconducting Cyclotron Lab (NSCL) at Michigan State University zeller@nscl.msu.edu Cryogenics has a long history in nuclear physics. The technology has its origins in the use of cold traps for maintaining a vacuum, which is required to prevent beam loss and for generating high voltages used in acceleration....