Michael Randle
#20,194
Most Influential Person Now
British activist
Michael Randle's AcademicInfluence.com Rankings
Michael Randlepolitical-science Degrees
Political Science
#678
World Rank
#868
Historical Rank
Public Policy
#636
World Rank
#678
Historical Rank
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Political Science
Michael Randle's Degrees
- PhD Peace Studies University of Bradford
- Masters Peace Studies University of Bradford
- Bachelors Politics University of Oxford
Why Is Michael Randle Influential?
(Suggest an Edit or Addition)According to Wikipedia, Michael Randle is an English peace campaigner and researcher known for his involvement in nonviolent direct action in Britain and also for his role in helping the Soviet spy George Blake escape from a British prison.
Michael Randle's Published Works
Published Works
- Gate-Controlled Metal-Insulator Transition in TiS3 Nanowire Field-Effect Transistors. (2019) (53)
- Space-charge limited conduction in epitaxial chromia films grown on elemental and oxide-based metallic substrates (2019) (27)
- Collective states and charge density waves in the group IV transition metal trichalcogenides (2021) (16)
- Transient hot-carrier dynamics and intrinsic velocity saturation in monolayer MoS2 (2020) (13)
- Epitaxial growth of cobalt oxide phases on Ru(0001) for spintronic device applications (2017) (9)
- High-electric-field behavior of the metal-insulator transition in TiS3 nanowire transistors (2022) (8)
- Transient Response of h-BN-Encapsulated Graphene Transistors: Signatures of Self-Heating and Hot-Carrier Trapping (2019) (7)
- Building the Quasi One Dimensional Transistor from 2D Materials (2019) (5)
- Nonvolatile Memory Action Due to Hot-Carrier Charge Injection in Graphene-on-Parylene Transistors (2019) (4)
- Josephson junctions of Weyl semimetal WTe2 induced by spontaneous nucleation of PdTe superconductor (2022) (4)
- Reply to "Comment on 'Gate-Controlled Metal-Insulator Transition in TiS3 Nanowire Field-Effect Transistors'". (2019) (3)
- Asymmetrically Engineered Nanoscale Transistors for On-Demand Sourcing of Terahertz Plasmons. (2022) (2)
- Correlated Insulator Collapse due to Quantum Avalanche via In-Gap Ladder States (2022) (1)
- Graphene on Chromia: A System for Beyond‐Room‐Temperature Spintronics (Adv. Mater. 12/2022) (2022) (1)
- Graphene on Chromia: A System for Beyond-Room-Temperature Spintronics. (2022) (1)
- Pulsed studies of intervalley transfer in Al0.35In0.65As : A paradigm for valley photovoltaics (2020) (1)
- Ordered three-fold symmetric graphene oxide/buckled graphene/graphene heterostructures on MgO(111) by carbon molecular beam epitaxy (2018) (0)
- Signatures of Quantum Non-Locality in a Graphene Polarizer-Analyzer Experiment (2020) (0)
- Gate Defined Josephson Junctions in Monolayer $\mathrm{WTe_2}$ (2023) (0)
- Remote Mesoscopic Signatures of Induced Magnetic Texture in Graphene. (2021) (0)
- Signatures of hot carriers and hot phonons in the re-entrant metallic and semiconducting states of Moiré-gapped graphene (2023) (0)
- Probing the Dynamics of Electric Double Layer Formation over Wide Time Scales (10–9–10+5 s) in the Ionic Liquid DEME-TFSI (2022) (0)
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What Schools Are Affiliated With Michael Randle?
Michael Randle is affiliated with the following schools: