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transverse magnetic field (45) 45
magnetic fields (39) 39
physics, fluids & plasmas (30) 30
vacuum arc (29) 29
vacuum arcs (28) 28
cathodes (22) 22
interrupters (13) 13
motion (13) 13
anodes (12) 12
circuit breakers (11) 11
behavior (9) 9
usage (9) 9
vacuum interrupter (9) 9
magnetisches feld (8) 8
modes (8) 8
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electrodes (7) 7
ignition (7) 7
lichtbogen (7) 7
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querfeld (7) 7
cameras (6) 6
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contact (6) 6
contacts (6) 6
mathematical models (6) 6
switches (6) 6
axial magnetic field (5) 5
charge coupled devices (5) 5
magnetic separation (5) 5
spannung (5) 5
spirals (5) 5
vakuum (5) 5
vakuumschalter (5) 5
analysis (4) 4
arc appearance (4) 4
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driven (4) 4
dynamics (4) 4
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magnetfeld (4) 4
physics, applied (4) 4
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rmf (4) 4
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transverse magnetic field contacts (4) 4
vacuum circuit breaker (4) 4
vacuum interrupters (4) 4
voltage (4) 4
arc (3) 3
capacitors (3) 3
dc interruption (3) 3
engineering, electrical & electronic (3) 3
geschwindigkeit (3) 3
high current (3) 3
high-speed camera (3) 3
intermediate frequency vacuum arc (3) 3
intermediate-frequency (3) 3
kathode (3) 3
longitudinal magnetic field (3) 3
lorentz-kraft (3) 3
magnetic noise (3) 3
magnetic shielding (3) 3
magnetohydrodynamik (3) 3
materials science, multidisciplinary (3) 3
numerische simulation (3) 3
optimization (3) 3
physics (3) 3
plasmas (3) 3
relay (3) 3
retrograde motion (3) 3
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spots (3) 3
transverse magnetic-field (3) 3
vacuum chambers (3) 3
vacuum technology (3) 3
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60 applied life sciences (2) 2
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attachment (2) 2
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coherent population trapping (2) 2
coils (2) 2
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by Collaboration, The ATLAS and Abat, E and Abdelalim, A A and Abdinov, O and Akimov, A V and Alessandria, F and Alves, R and Alviggi, M G and Amelung, C and Amram, N and Andrieux, M-L and Anduaga, X S and Antonelli, M and Apsimon, R and Arnault, C and Artamonov, A and Assamagan, K and Athar, B and Austin, N and Avramidou, R and Azuelos, G and Bailey, D C and Pedrosa, F Baltasar Dos Santos and Banfi, D and Bardin, D Y and Bargassa, P and Baron, S and Barreiro, F and Bartoldus, R and Bazalova, M and Bedajanek, I and Beddall, A J and Bednyakov, V A and Bee, C and Belanger, G A N and Belanger-Champagne, C and Belhorma, B and Bell, W H and Bellachia, F and Bellagamba, L and Bellomo, G and Beltramello, O and Benchekroun, D and Bendel, M and Benedict, B H and Bernabéu, J and Berry, T and Bertolucci, S and Beteille, A and Bialas, W and Bianco, M and Biglietti, M and Bilokon, H and Bizzell, J P and Blair, R E and Blanch, O and Blanchot, G and Blumenschein, U and Boaretto, C and Bohm, C and Bohm, J and Boisvert, V and Bonino, R and Boosten, M and Booth, C N and Booth, P and Borisov, A and Bos, K and Boutemeur, M and Bouzakis, K and Boyer, B H and Brandt, A and Brandt, O and Bravo, S and Brelier, B and Brock, R and Brouwer, G and Bruschi, M and Bugge, L and Burdin, S and Buszello, K P and Butterworth, J M and Cakir, O and Callahan, J and Cameron, D and Cammin, J and Caprio, M and Caramarcu, C and Carcagno, Y and Cardeira, C and Carli, T and Carpentieri, C and Carr, F S and Carter, A A and Casado, M P and Gimenez, V Castillo and Castrovillari, F and Cattai, A and Caughron, S and Cauz, D and ...
Journal of instrumentation, ISSN 1748-0221, 2008, Volume 3, Issue 8, pp. S08003 - S08003
The ATLAS detector as installed in its experimental cavern at point 1 at CERN is described in this paper. A brief overview of the expected performance of the... 
CERN | Electromagnetic and hadronic interactions | Radiation-hard electronics | Muon spectrometer | Accordion geometry | Hall probes | Heavy-ion collisions | Trigger chambers | Bunch-crossings | Proton-proton collisions | Tracking algorithms | Vertex measurement | Forward detectors | Detector control system | Particle identification | Longitudinal segmentation | Carbon-fibre reinforced plastics | Optical fibres | Inner detector | Pixel detectors | Superconducting magnets | Roman Pots | Solenoidal field | Missing transverse energy | Lateral segmentation | Precision-tracking chambers | Calorimetry | Jets | Charged-particle tracking | Fluorinert cooling | Thin-gap chambers | Vertexing algorithms | B-tagging | Minimum-bias events | LHC | Silicon micro-strip detectors | Pile-up | Taus | High-level trigger | ATLAS | Impact parameter measurements | Bandwidth | Event filter | Drift tubes | Liquid argon | Resistive-plate chambers | Muons | Leptons | Time-over-threshold | Trigger and data acquisition | Processor farm | Magnetic field measurements | Photons | Toroidal field | Optical alignment systems | Forward calorimetry | Cerenkov light | Scintillator tiles | Transition radiation | Zero-degree calorimetry | Sampling calorimeters | Accelerator | Electrons | PERFORMANCE | END-CAP CALORIMETER | COLD MASS | BARREL TOROID MAGNET | INSTRUMENTS & INSTRUMENTATION | b-tagging | LIQUID ARGON CALORIMETER | DRIFT-TUBE CHAMBERS | SEMICONDUCTOR TRACKER | LUMINOSITY MEASUREMENT | CONSTRUCTION | Physics | High Energy Physics - Experiment
Journal Article
Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, ISSN 0258-8013, 01/2011, Volume 31, Issue 1, pp. 131 - 137
Journal Article
IEEE Transactions on Plasma Science, ISSN 0093-3813, 06/2011, Volume 39, Issue 6, pp. 1284 - 1290
Journal Article
2011 1st International Conference on Electric Power Equipment - Switching Technology, 10/2011, pp. 652 - 656
.... In our present work, experiments are carried out to compare the arc characteristics on break between DC 28V and DC 270V under the conditions of different current and transverse magnetic fields (TMF... 
HVDC transmission | Materials | DC 28V | DC 270V | Arc characteristics | Magnetic fields | Copper | Anodes | Relays | Transverse magnetic field | Cathodes
Conference Proceeding
電子情報通信学会技術研究報告. EMD, 機構デバイス, ISSN 0913-5685, 11/2011, Volume 111, pp. 73 - 77
Application of transverse magnetic field (TMF) is one of the most important ways to improve electric life and breaking capacity of DC relays... 
Journal Article
電子情報通信学会技術研究報告. EMD, 機構デバイス, ISSN 0913-5685, 11/2011, Volume 111, pp. 23 - 26
.... In our present work, experiments are carried out to compare the arc characteristics on break among DC 28V, 42V, 75V, 110V and 270V under the conditions of different current and transverse magnetic fields (TMF... 
Journal Article
26th International Conference on Electrical Contacts (ICEC 2012), 2012, Volume 2012, Issue 605, pp. 30 - 34
Using transverse magnetic field (TMF) is one of the most important ways to improve the electric life and the breaking capacity of DC relays... 
Gaseous insulation, breakdown and discharges | Permanent magnets | Relays and switches | Electric and magnetic fields | Electrical contacts | Transverse magnetic field (tmf) | Arc duration | Relay | Contact
Conference Proceeding
2012 IEEE International Power Modulator and High Voltage Conference (IPMHVC), 06/2012, pp. 672 - 674
.... In this paper, we investigated the interruption behavior in the real VI with two different contact size of the transverse magnetic field (TMF... 
transverse magnetic field | Vacuum interrupter | vacuum arc | Vacuum arc | Transverse magnetic field
Conference Proceeding
Advanced materials research, ISSN 1022-6680, 07/2012, Volume 557-559, pp. 1747 - 1751
.... The magnetic field current could been changed during surfacing. After plasma arc surfacing with magnetic field, the OM, XRD, wear loss test, micro-hardness test were used... 
Magnetic field style | Co-based alloy | Plasma arc surfacing | Microstructure and properties
Journal Article
IEICE Transactions on Electronics, ISSN 0916-8524, 2012, Volume E95-C, Issue 9, pp. 1481 - 1486
Application of transverse magnetic field (TMF) is one of the most important ways to improve electric life and breaking capacity of DC relays... 
Relay | Transverse magnetic field (TMF) | Making and breaking arc duration | Contact | transverse magnetic field (TMF) | making and breaking arc duration | relay | contact | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
等离子体科学和技术:英文版, ISSN 1009-0630, 2013, Volume 15, Issue 1, pp. 30 - 36
Journal Article
IEEE Transactions on Plasma Science, ISSN 0093-3813, 07/2013, Volume 41, Issue 7, pp. 1709 - 1715
...) and Transverse/Radial Magnetic Field (TMF/RMF) arc controls. With this new arc control, the arc forming when the contacts are parted is a rotating diffuse columnar arc with a main arc column which can occupy up to half of the contact tip surface... 
Electrodes | vacuum interrupters | Voltage measurement | Interrupters | Current measurement | Magnetic separation | Arc control | circuit breakers | Voltage control | Vacuum arcs | vacuum arcs | PHYSICS, FLUIDS & PLASMAS | Electric circuit-breakers | Usage | Transverse waves | Electric arc | Analysis | Vacuum technology
Journal Article
IEEE Transactions on Plasma Science, ISSN 0093-3813, 08/2013, Volume 41, Issue 8, pp. 2068 - 2073
.... External coils are used to generate transverse magnetic field (TMF) driving cathode spots to rotate on tube surface... 
transverse magnetic field (TMF) | Electron tubes | vacuum arc | Magnetic fields | Vacuum arcs | Surface treatment | Cathodes | Cathode spots (CSs) | oxide layer | METAL-SURFACE | PRESSURE | PHYSICS, FLUIDS & PLASMAS | CATHODE SPOTS
Journal Article
IEEE Transactions on Power Delivery, ISSN 0885-8977, 10/2013, Volume 28, Issue 4, pp. 2014 - 2021
Journal Article
等离子体科学与技术:英文版, ISSN 1009-0630, 2014, Volume 16, Issue 5, pp. 454 - 459
Arc motion and splitting of vacuum arc at intermediate frequency(400-800 Hz) were investigated under transverse magnetic field(TMF... 
arc appearance | transverse magnetic field (TMF) | intermediate frequency vacuum arc | vacuum arc | split arc | arc motion | RETROGRADE MOTION | VOLTAGE/CURRENT CHARACTERISTICS | PHYSICS, FLUIDS & PLASMAS | BEHAVIOR | CATHODE SPOTS | Photography | Splitting | Noise | Circuits | High speed | Formations | Magnetic fields | Intermediate frequencies
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 09/2014, Volume 401, pp. 813 - 819
... of a transverse magnetic field. With the application of a transverse magnetic field, the velocity, temperature and oxygen concentration fields in the melt become three-dimensional and asymmetric... 
Czochralski crystal growth | 3D Numerical simulation | Oxygen concentration | Transverse magnetic field | Semiconductor silicon | PHYSICS, APPLIED | MELT-CRYSTAL INTERFACE | MATERIALS SCIENCE, MULTIDISCIPLINARY | SOLIDIFICATION | CRYSTALLOGRAPHY | MULTICRYSTALLINE SILICON | Silicon | Computer simulation | Variability | Crystals | Mathematical models | Magnetic fields | Czochralski process | Three dimensional
Journal Article
IEEE Transactions on Plasma Science, ISSN 0093-3813, 01/2015, Volume 43, Issue 1, pp. 472 - 479
In this paper, the relationship between the external transverse magnetic field (TMF) and the ignition probability of new cathode spot in different directions... 
Cathode spots | Simulation | Ignition | Probability density function | Probability distribution | transverse magnetic field (TMF) | vacuum arc | Integrated circuit modeling | Vacuum arcs | Cathodes | RETROGRADE MOTION | PHYSICS, FLUIDS & PLASMAS | DYNAMICS | PHYSICS
Journal Article
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