visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2015-10-15 10:00 
연사  
장소 E6-2, 5th fl. #5318 

Development of Large-Bore, High Field Magnets at the NHMFL

2015/10/15(Thurs) 10AM, E6-2, (RM)#5318
Dr. Mark D. Bird , Florida State University


The National High Magnetic Field Laboratory (MagLab) provides themost intense dc and pulsed magnetic fields worldwide for a variety of types of experiments in physics, chemistry, biology and other sciences. 

The MagLab includes 7 user facilities: 

1) Pulsed magnets up to 101 T for ~10 ms, 

2) dc powered magnets up to 45 T, 

3) high-resolution NMR magnets up to 21.1 T, 

4) MRI magnets up to 21 T for rodents, 

5) Ion-Cyclotron Resonance magnets up to 21 T, 

as well as 6) ultra-high ratios o field to temperature including 15 T at 0.4 mK. 

Presently the MagLab is one of the leading labs worldwide developingultra-high field dc magnets using high-temperature superconductors (HTS). 

As early as 2008 an HTS test coil at the MagLab reached 35 T (4 T HTS coil inside 31 T resistive magnet). Quench protection systems that can be scaled to real user magnets were first demonstrated in 2011. 

Individual HTS coils have been intentionally quenched up to 80 times without degradation. In 2015 a 27 T all-superconducting magnet was tested as well as testing of prototype coils 

for a 32 T all-superconducting user magnet was completed. The 32 T system should be open to external users in 2016. 

Magnet Technology based on HTS materials could be used in the development of Axion Detectors, providing a unique combination of field and bore for the search for dark matter. 

 

Contact: CAPP Administraion Office(350-8166) 

번호 날짜 연사 제목
공지 2025-09-01 12:00    2025년 가을학기 콜로키움
공지 2025-09-05 11:00    2025년 가을학기 물리학과 특별세미나 (광학/응집물리 분야)
442 2018-07-02 15:00    High Precision Magnetic Field Measurement for the Muon g-2 Experiment file
441 2015-10-16 15:00    High Magnetic Fields to Probe the sub-eV range of Particle/Astroparticle Physics - From the OSQAR experiments at CERN up to new perspectives at LNCMI-Grenoble
440 2018-11-09 14:30    Moiré superlattices – from twisted bilayer graphene to quasicrystal file
439 2024-05-30 10:00  Dr. Rasoul Ghadimi (Seoul National University)  Quasiperiodic Effects in Quasicrystals
438 2024-05-16 14:30  Dr. Ritoban Basu Thakur (NASA Jet Propulsion Laboratory / Caltech)  [Astrophysics Seminar] Observational Cosmology with Superconducting Sensors
437 2022-03-29 10:00    Non-reciprocal phase transitions file
436 2022-03-31 10:00    Weiss fields for Quantum Spin Dynamics file
435 2020-10-15 17:00    Time crystals, quasicrystals, and time crystal dynamics in the superfluid universe file
434 2023-05-03 16:00    Probing microscopic origins of axions by the chiral magnetic effect
433 2022-11-09 16:00    Radio Astronomy, Radio Interferometry, and Multi-wavelength Studies on Relativistic Jets
432 2017-06-02 16:00    Maxwell's demon in quantum wonderland file
431 2015-12-03 16:00    Hybrid solid state spin qubits in wide bandgap semiconductors
430 2025-01-08 16:00  Dr. SangEun Han (Simon Fraser University)  Quantum impurity model for two-stage multipolar ordering and Fermi surface reconstruction
429 2022-06-10 16:00    Fe5GeTe2의 나선형 자성특성과 자기저항의 전류밀도 의존성 연구 file
428 2017-03-24 16:00    Graphene based nano electronics and nano electromechanics; focusing on precise control of nano structures for studying accurate physical properties
427 2016-09-29 16:00    Large-scale Silicon Photonic MEMS Switches
426 2015-07-15 14:00    Electronic and optical properties of titanate-based oxide superlattices
425 2019-06-17 10:30    Chiral Spintronics file
424 2019-04-19 16:00    Graphene and hBN heterostructures file
423 2023-09-21 16:00    [CAPP seminar] Axion Magnetic Resonance file