Rajdeep Kaur
PhD student at Department of Physics and Astronomy; Materials Physics
- E-mail:
- rajdeep.kaur@physics.uu.se
- Visiting address:
- Ångströmlaboratoriet, Regementsvägen 10
752 37 Uppsala - Postal address:
- Box 524
751 20 UPPSALA
- ORCID:
- 0000-0002-7279-6488
Publications
Recent publications
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Part of ACS Applied Materials and Interfaces, p. 28009-28019, 2026
- DOI for Tuning TiO2 memristors by defect engineering: From short-term memory to recoverable long-term resistance states
- Download full text (pdf) of Tuning TiO2 memristors by defect engineering: From short-term memory to recoverable long-term resistance states
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Part of ACS Applied Materials and Interfaces, p. 28009-28019, 2026
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Nanoscale Engineering with Ions: Formation of Nanostructures and Tuning of Material Properties
2026
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Ion Track Formation and Nanopore Etching in Polyimide: Possibilities in the MeV Ion Energy Regime
Part of Macromolecular materials and engineering, 2024
- DOI for Ion Track Formation and Nanopore Etching in Polyimide: Possibilities in the MeV Ion Energy Regime
- Download full text (pdf) of Ion Track Formation and Nanopore Etching in Polyimide: Possibilities in the MeV Ion Energy Regime
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Charge equilibration and irradiation damage threshold for MeV ions in polyimide
Part of Nuclear Instruments and Methods in Physics Research Section B, 2024
- DOI for Charge equilibration and irradiation damage threshold for MeV ions in polyimide
- Download full text (pdf) of Charge equilibration and irradiation damage threshold for MeV ions in polyimide
All publications
Articles in journal
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Part of ACS Applied Materials and Interfaces, p. 28009-28019, 2026
- DOI for Tuning TiO2 memristors by defect engineering: From short-term memory to recoverable long-term resistance states
- Download full text (pdf) of Tuning TiO2 memristors by defect engineering: From short-term memory to recoverable long-term resistance states
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Part of ACS Applied Materials and Interfaces, p. 28009-28019, 2026
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Ion Track Formation and Nanopore Etching in Polyimide: Possibilities in the MeV Ion Energy Regime
Part of Macromolecular materials and engineering, 2024
- DOI for Ion Track Formation and Nanopore Etching in Polyimide: Possibilities in the MeV Ion Energy Regime
- Download full text (pdf) of Ion Track Formation and Nanopore Etching in Polyimide: Possibilities in the MeV Ion Energy Regime
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Charge equilibration and irradiation damage threshold for MeV ions in polyimide
Part of Nuclear Instruments and Methods in Physics Research Section B, 2024
- DOI for Charge equilibration and irradiation damage threshold for MeV ions in polyimide
- Download full text (pdf) of Charge equilibration and irradiation damage threshold for MeV ions in polyimide
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Part of Physica Status Solidi. Rapid Research Letters, 2024
- DOI for Position‐Selective Introduction of Ferromagnetism on the Micro‐ and Nanoscale in a Paramagnetic Thin Palladium Film
- Download full text (pdf) of Position‐Selective Introduction of Ferromagnetism on the Micro‐ and Nanoscale in a Paramagnetic Thin Palladium Film
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Part of Materials Research Express, 2024
- DOI for Sputter-deposition of ultra-thin film stacks from EUROFER97 and tungsten: characterisation and interaction with low-energy D and He ions
- Download full text (pdf) of Sputter-deposition of ultra-thin film stacks from EUROFER97 and tungsten: characterisation and interaction with low-energy D and He ions
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Surface characterization of CaF2 crystals irradiated with MeV ions below charge state equilibrium
Part of Nuclear Instruments and Methods in Physics Research Section B, p. 132-137, 2023
- DOI for Surface characterization of CaF2 crystals irradiated with MeV ions below charge state equilibrium
- Download full text (pdf) of Surface characterization of CaF2 crystals irradiated with MeV ions below charge state equilibrium
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Part of Nuclear Materials and Energy, 2023
- DOI for Thin films sputter-deposited from EUROFER97 in argon and deuterium atmosphere: Material properties and deuterium retention
- Download full text (pdf) of Thin films sputter-deposited from EUROFER97 in argon and deuterium atmosphere: Material properties and deuterium retention