Maja D. Bachmann Bachmann Manipulating Anisotropic Transport and Superconductivity by Focused Ion Beam Microstructuring

Manipulating Anisotropic Transport and Superconductivity by Focused Ion Beam Microstructuring

von Maja D. Bachmann

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Beschreibung

This thesis presents pioneering work in the relatively new field of focused ion beam (FIB) sculpting of single crystals to produce bespoke devices and enable the investigation of physics that cannot be studied in bulk samples. It begins with a comprehensive and didactic account of how to achieve this sculpting, revealing the ‘tricks of the trade’ of state-of-the-art FIB microstructuring. In subsequent chapters, the author presents ground-breaking results obtained from microstructures of the delafossite oxide metal PdCoO2 and the heavy fermion superconductor CeIrIn5. In these elegant, forefront experiments, a new form of directional ballistic transport in the ultra-pure delafossites is described and explained. Furthermore, a new way to spatially modulate superconductivity induced by strain is demonstrated with electrical transport measurements that agree well with predictions based on thermoelastic finite element simulations.


This thesis presents pioneering work in the relatively new field of focused ion beam (FIB) sculpting of single crystals to produce bespoke devices and enable the investigation of physics that cannot be studied in bulk samples. It begins with a comprehensive and didactic account of how to achieve this sculpting, revealing the ‘tricks of the trade’ of state-of-the-art FIB microstructuring. In subsequent chapters, the author presents ground-breaking results obtained from microstructures of the delafossite oxide metal PdCoO2 and the heavy fermion superconductor CeIrIn5. In these elegant, forefront experiments, a new form of directional ballistic transport in the ultra-pure delafossites is described and explained. Furthermore, a new way to spatially modulate superconductivity induced by strain is demonstrated with electrical transport measurements that agree well with predictions based on thermoelastic finite element simulations.


Nominated as an outstanding Ph.D. thesis by the University of St Andrews, Scotland Provides an in-depth description of focused ion beam (FIB) microstructuring fabrication techniques Showcases how novel transport device architectures can be tailored to answer specific research questions Describes a generic approach to spatially manipulating electronic order on a micrometer length scale

Autor*in

Maja D. Bachmann

Themen in »Manipulating Anisotropic Transport and Superconductivity by Focused Ion Beam Microstructuring«

Focused Ion Beam (FIB) Microstructuring Transport Device Fabrication PdCoO2 Delafossites Directional Balllistic Electron Transport Transverse Electron Focusing (TEF) CeIrIn5 Heavy Fermion Superconductivity Spatial Strain Modulation Thermoelastic Finite Element Simulations

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Details

ISBN: 9783030513627
Verlag: Springer International Publishing
Erscheinung: 28.08.2020

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