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Ratu Mataira
Ratu Mataira
PhD Graduate, Robinson Research Institute, Victoria Unviersity of Wellington
Подтвержден адрес электронной почты в домене vuw.ac.nz
Название
Процитировано
Процитировано
Год
Origin of the DC output voltage from a high-Tc superconducting dynamo
RC Mataira, MD Ainslie, RA Badcock, CW Bumby
Applied Physics Letters 114 (16), 2019
772019
A new benchmark problem for electromagnetic modelling of superconductors: The high-T c superconducting dynamo
M Ainslie, F Grilli, L Quéval, E Pardo, F Perez-Mendez, R Mataira, ...
Superconductor Science and Technology 33 (10), 105009, 2020
752020
Mechanism of the High- Superconducting Dynamo: Models and Experiment
R Mataira, M Ainslie, A Pantoja, R Badcock, C Bumby
Physical Review Applied 14 (2), 024012, 2020
442020
Classifying superconductivity in Moiré graphene superlattices
EF Talantsev, RC Mataira, WP Crump
Scientific reports 10 (1), 212, 2020
432020
Finite-element modelling of no-insulation HTS coils using rotated anisotropic resistivity
RC Mataira, MD Ainslie, RA Badcock, CW Bumby
Superconductor Science and Technology 33 (8), 08LT01, 2020
332020
Modeling the charging process of a coil by an HTS dynamo-type flux pump
A Ghabeli, M Ainslie, E Pardo, L Quéval, R Mataira
Superconductor Science and Technology 34 (8), 084002, 2021
262021
Modeling of Stator Versus Magnet Width Effects in High- Superconducting Dynamos
R Mataira, MD Ainslie, R Badcock, CW Bumby
IEEE Transactions on Applied Superconductivity 30 (4), 1-6, 2020
262020
Mode I delamination testing of REBCO coated conductors via climbing drum peel test
NJ Long, RC Mataira, E Talantsev, RA Badcock
IEEE Transactions on Applied Superconductivity 28 (4), 1-5, 2018
222018
Critical current retention of potted and unpotted REBCO Roebel cables under transverse pressure and thermal cycling
EF Talantsev, RA Badcock, R Mataira, SV Chong, K Bouloukakis, ...
Superconductor Science and Technology 30 (4), 045014, 2017
222017
Modelling the Frequency Dependence of the Open-Circuit Voltage of a High-Tc Superconducting Dynamo
MD Ainslie, L Quéval, RC Mataira, CW Bumby
IEEE Transactions on Applied Superconductivity 31 (5), 1-7, 2021
202021
Practical estimation of HTS dynamo losses
K Hamilton, R Mataira, J Geng, C Bumby, D Carnegie, R Badcock
IEEE Transactions on Applied Superconductivity 30 (4), 1-5, 2020
182020
Application of epoxy-bonded FBG temperature sensors for high-temperature superconductor-coated conductor quench detection
Y Liu, R Mataira, R Badcock, Z Jiang, J Fang
IEEE Transactions on Applied Superconductivity 31 (2), 1-8, 2020
132020
Classifying superconductivity in ThH-ThD superhydrides/superdeuterides
EF Talantsev, RC Mataira
Materials Research Express 7 (1), 016003, 2020
122020
Feasibility study of fiber Bragg grating sensor for quench detection of high temperature superconductors
Y Liu, M Fisser, J Fang, Z Jiang, R Mataira, RA Badcock
IEEE Transactions on Applied Superconductivity 29 (5), 1-6, 2019
122019
Modelling Parallel-Connected, No-Insulation High- Superconducting Magnets
R Mataira, MD Ainslie, R Badcock, CW Bumby
IEEE Transactions on Applied Superconductivity 31 (5), 1-5, 2021
92021
Polar projections for big data analysis in applied superconductivity
EF Talantsev, RC Mataira
AIP Advances 8 (7), 2018
82018
Mechanism of the high
R Mataira, M Ainslie, A Pantoja, R Badcock, C Bumby
Phys. Rev. Appl 14 (2), 2020
62020
Below 1 µV cm− 1: determining the geometrically-saturated critical transport current of a superconducting tape
JM Brooks, MD Ainslie, R Mataira, R Badcock, CW Bumby
Superconductor Science and Technology 34 (8), 085004, 2021
32021
Corrigendum: A new benchmark problem for electromagnetic modelling of superconductors: the high-Tc superconducting dynamo (2020 supercond. sci. technol. 33 105009)
M Ainslie, F Grilli, L Quéval, E Pardo, F Perez-Mendez, R Mataira, ...
Superconductor Science and Technology 34 (2), 029502, 2021
32021
Modeling HTS non-insulated coils: A comparison between finite-element and distributed network models
S Venuturumilli, RC Mataira, RW Taylor, JT Gonzales, CW Bumby
AIP Advances 13 (3), 2023
12023
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