visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2016-06-14 15:00 
연사  
장소 #1323 (E6-2 1st fl.) 

No-Insulation High Temperature Superconductor Magnet Technology for Compact, Reliable, and Low-Cost High Field DC Magnets

 

June 14, 2016 (Tue) 3PM , #1323 (E6-2 1st fl.)
Prof. Seungyong Hahn, Florida State University


Abstract:


Firstly introduced in 2010, the No-Insulation (NI) high temperature superconductor (HTS) winding technique is expected to provide a practical solution for protection of HTS magnets, one of the most critical challenges in high-field (>20-T) HTS magnets. The key idea is to eliminate turn-to-turn insulation within an HTS coil and, in a quench event, current can be automatically diverted to the adjacent turns through turn-to-turn shorts. As a result, an NI magnet can be designed at a substantially higher operating current density than that of its insulated counterpart, thus the magnet becomes extremely compact, yet “self-protecting.” To date, over 100 NI HTS coils have been constructed and tested to have successfully demonstrated the self-protecting feature of NI coils. In a magnet level, a total of 9 NI magnets have been designed, constructed, and tested, including the recent 26-T 35-mm all-REBCO magnet that was designed by Hahn and constructed by SuNAM. To date, all of NI magnets survived after multiple consecutive quenches at their nominal operating temperature ranged 4.2 – 20 K. An NI magnet, however, has a major drawback of “charging delay” due to its turn-to-turn shorts. Several variations of the NI technique, including the Partial-No-Insulation (PNI) and the Metallic-Cladding-Insulation (MCI), are proposed by several groups, with which 5 – 50 times reduced charging delays were reported than those of their NI counterparts. This presentation provides a summary of the NI magnet technologies, relevant to design and construction of axion detection magnets, for the past 5 years, which include: 1) recent quench test results of two all-REBCO magnets, 26-T/35-mm and 7-T/78-mm; 2) a 9 T REBCO insert that reached a record high field of 40 T in a background field of 31 T; 3) “electromagnetic quench propagation” as the self-protecting mechanism of an NI magnet; 4) potential of the NI technique for the next-generation ultra high field magnets; 5) major challenges and potential pitfalls. 


Contact: CAPP Administration Office(T.8166)

번호 날짜 연사 제목
공지 2026-03-09 16:00    2026년 봄학기 콜로키움
공지 2026-03-05 16:00    2026년 봄학기 물리학과 특별세미나 (광학/응집물리 분야)
485 2016-05-31 16:00    Understanding 3D tokamak physics towards advanced control of toroidal plasma
484 2023-07-18 11:00    Non-Hermitian Casimir Effect of Magnons
483 2024-06-13 16:00  Dr. Kouki Nakata (Advanced Science Research Center, Japan Atomic Energy Agency)  Magnonic $\varphi$ Josephson junction and its non-Hermitian Josephson diode effect
482 2023-09-14 16:00    [CAPP seminar] Dark matter searches in Water Cherenkov Detectors file
481 2018-05-11 14:30    Disordered Floquet topological insulators file
480 2016-12-09 16:00    Shift Charge and Spin Photocurrents in Dirac Surface States of Topological Insulator
479 2022-05-13 14:30    Topological Superconducting Spintronics Towards Zero-Power Computing Technologies file
478 2021-07-29 14:00    Gravitationally Induced Dark Sector and Inflationary Dynamics file
477 2015-12-11 13:30    Quantum spin liquid in the 1/3 depleted triangular lattice Ba3(Ru1-xIrx)Ti2O9
476 2016-03-11 13:30    Topological phases of matter in nonequilibrium: Topology of the Wannier-Stark ladder
475 2018-11-01 16:00    Direct holography from a single snapshot file
474 2022-08-18 10:00    Disorder-driven phase transition in the second-order non-Hermitian skin effect
473 2023-04-27 11:00    Inverse Shapiro steps and coherent quantum phase slip in superconducting nanowires
472 2015-07-16 16:00    Next-generation ultrafast laser technology for nonlinear optics and strong-field physics
471 2018-10-26 16:00    Coexisting triple-point and nodal-line topological magnons and thermal Hall effect in pyrochlore iridates file
470 2017-03-24 14:30    Topological Dynamics
469 2025-09-10 11:00  Dr. Manato Fujimoto (Univ. of Tokyo)  Fractional Chern Insulators: motivation, experiments, and what makes the LLL special file
468 2025-09-10 16:00  Dr. Manato Fujimoto (Univ. of Tokyo)  Mimicking Landau levels at B = 0: quantum geometry, Kähler bands, and vortexability (with a view to higher LL physics) file
467 2015-10-15 10:00    Development of Large-Bore, High Field Magnets at the NHMFL
466 2023-06-22 16:00    [CAPP Seminar] The muon g-2 puzzle file