∆d Dependent On Vortex Age For Different Ann Types Without Plates
∆d Dependent On Vortex Age For Different Ann Types Without Plates
∆d Dependent On Vortex Age For Different Ann Types Without Plates
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Circulation Error Dependent On Vortex Age And Rv Reference Circulation
Circulation Error Dependent On Vortex Age And Rv Reference Circulation
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Temporal Evolution Of Estimated Vortex Circulation Without Plates
Temporal Evolution Of Estimated Vortex Circulation Without Plates
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Average Vortex Positions According To Vortex Age ψ A For Different
Average Vortex Positions According To Vortex Age ψ A For Different
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Figure S3 Thickness Dependent Vortex Creep In Ygdba 2 Cu 3 O 7−x
Figure S3 Thickness Dependent Vortex Creep In Ygdba 2 Cu 3 O 7−x
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Formation Of Vortex States In The Nanoplate Junctions With Different
Formation Of Vortex States In The Nanoplate Junctions With Different
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Temperature Dependent Properties Of Vortex States A The T H Diagram
Temperature Dependent Properties Of Vortex States A The T H Diagram
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Ac The Outline Of The Input Experiment Vt For The Highly
Ac The Outline Of The Input Experiment Vt For The Highly
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Pdf Angular Dependent Vortex Pinning Mechanisms In Yba2cu3o7 Coated
Pdf Angular Dependent Vortex Pinning Mechanisms In Yba2cu3o7 Coated
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Pdf Angular Dependent Vortex Pinning Mechanisms In Yba2cu3o7 Coated
Pdf Angular Dependent Vortex Pinning Mechanisms In Yba2cu3o7 Coated
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A Calculated Fermi Surface Of Nb110 Red Lines Denote Pockets
A Calculated Fermi Surface Of Nb110 Red Lines Denote Pockets
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Figure 1 From Temperature Dependent Vortex Motion In A Square
Figure 1 From Temperature Dependent Vortex Motion In A Square
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Figure 1 From Perfect Vortex Modes For Nondestructive Characterization
Figure 1 From Perfect Vortex Modes For Nondestructive Characterization
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Dependence Of The Vortex Generation Efficiencies Of Transverse Field
Dependence Of The Vortex Generation Efficiencies Of Transverse Field
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Signature Of Anomalous Vortex Liquid And Schematic Magnetic
Signature Of Anomalous Vortex Liquid And Schematic Magnetic
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Degree Of Anharmonicity δ ∆ I N ∆ Out See Figure 5 For Various
Degree Of Anharmonicity δ ∆ I N ∆ Out See Figure 5 For Various
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Figure 4 From Polarization Dependent Distortion Of The Vortex Light
Figure 4 From Polarization Dependent Distortion Of The Vortex Light
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Figure S3 Thickness Dependent Vortex Creep In Ygdba 2 Cu 3 O 7−x
Figure S3 Thickness Dependent Vortex Creep In Ygdba 2 Cu 3 O 7−x
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Pdf Angular Dependent Vortex Pinning Mechanisms In Yba2cu3o7 Coated
Pdf Angular Dependent Vortex Pinning Mechanisms In Yba2cu3o7 Coated
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Coherence Lengths In The Normal Single Flux Quantum Vortex
Coherence Lengths In The Normal Single Flux Quantum Vortex
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Perpendicular Bias Field Dependent Vortex Gyration Eigenfrequency
Perpendicular Bias Field Dependent Vortex Gyration Eigenfrequency
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Figure 1 From Angle Dependent Vortex Structure In A High Anisotropy
Figure 1 From Angle Dependent Vortex Structure In A High Anisotropy
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Thickness Dependent Vortex Creep In Ygdba 2 Cu 3 O 7−x Film A
Thickness Dependent Vortex Creep In Ygdba 2 Cu 3 O 7−x Film A
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Figure 2 From Field Dependent Vortex Pinning Strength In A Periodic
Figure 2 From Field Dependent Vortex Pinning Strength In A Periodic
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Instantaneous Vorticity For Vortex Transport Problem Using Various
Instantaneous Vorticity For Vortex Transport Problem Using Various
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World Data Of The Spin Dependent Cross Section Difference ∆σ On The
World Data Of The Spin Dependent Cross Section Difference ∆σ On The
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Schematic Illustrations Of Major Vortex Types By Shape Download
Schematic Illustrations Of Major Vortex Types By Shape Download
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Scaled Energy Difference ∆ehs As A Function Of C2c0 For A Rξ D 4
Scaled Energy Difference ∆ehs As A Function Of C2c0 For A Rξ D 4
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Figure 1 From Evidence For Vortex Staircases In The Whole Angular Range
Figure 1 From Evidence For Vortex Staircases In The Whole Angular Range
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Schematic Diagram Of Different Types Of Vortex Generators 1
Schematic Diagram Of Different Types Of Vortex Generators 1
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Table I From Frequency Dependent Conductivity Of Vortex Cores In Type
Table I From Frequency Dependent Conductivity Of Vortex Cores In Type
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Figure 2 From Field Dependent Vortex Pinning Strength In A Periodic
Figure 2 From Field Dependent Vortex Pinning Strength In A Periodic
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Coherence Lengths In The Normal Single Flux Quantum Vortex Angle
Coherence Lengths In The Normal Single Flux Quantum Vortex Angle
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Three Dimensional Time Dependent Vortex Breakdown Attached To The
Three Dimensional Time Dependent Vortex Breakdown Attached To The
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