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Beschreibung
Systems of trapped ions and systems of ultracold Rydberg atoms are used at the forefront of quantum physics research and they make strong contenders as platforms for quantum technologies. Trapped Rydberg ions are a new hybrid technology envisaged to have both the exquisite control of trapped ion systems and the strong interactions of Rydberg atoms.
In this work a single trapped Rydberg ion is experimentally investigated. A trapped strontium ion is excited to Rydberg states using two ultraviolet lasers. Effects of the strong trapping electric fields on the highly-sensitive Rydberg ion are studied. After mitigating unwanted trap effects, the ion is coherently excited to Rydberg states and a quantum gate is demonstrated. This thesis lays much of the experimental groundwork for research using this novel system.
Systems of trapped ions and systems of ultracold Rydberg atoms are used at the forefront of quantum physics research and they make strong contenders as platforms for quantum technologies. Trapped Rydberg ions are a new hybrid technology envisaged to have both the exquisite control of trapped ion systems and the strong interactions of Rydberg atoms.
In this work a single trapped Rydberg ion is experimentally investigated. A trapped strontium ion is excited to Rydberg states using two ultraviolet lasers. Effects of the strong trapping electric fields on the highly-sensitive Rydberg ion are studied. After mitigating unwanted trap effects, the ion is coherently excited to Rydberg states and a quantum gate is demonstrated. This thesis lays much of the experimental groundwork for research using this novel system.
Über den Autor
Zusammenfassung
Nominated as an outstanding Ph.D. thesis by the Stockholm University, Stockholm, Sweden
Essential background work for realization of trapped-ion qubits
Research conducted at University of Innsbruck and Stockholm University - cotutelle PhD
Inhaltsverzeichnis
Introduction.- Properties of Strontium Rydberg Ions.- Experimental Setup.- Two-Photon Rydberg Excitation.- Ion Loss by Double Ionisation.- Trap Effects.- Coherent Excitation of Rydberg States.- Summary and Outlook.
Details
Erscheinungsjahr: | 2019 |
---|---|
Fachbereich: | Atomphysik & Kernphysik |
Genre: | Mathematik, Medizin, Naturwissenschaften, Physik, Technik |
Rubrik: | Naturwissenschaften & Technik |
Medium: | Buch |
Inhalt: |
xvii
98 S. 8 s/w Illustr. 41 farbige Illustr. 98 p. 49 illus. 41 illus. in color. |
ISBN-13: | 9783030337698 |
ISBN-10: | 3030337693 |
Sprache: | Englisch |
Einband: | Gebunden |
Autor: | Higgins, Gerard |
Auflage: | 1st edition 2019 |
Hersteller: | Springer International Publishing |
Verantwortliche Person für die EU: | Springer Verlag GmbH, Tiergartenstr. 17, D-69121 Heidelberg, juergen.hartmann@springer.com |
Maße: | 241 x 160 x 13 mm |
Von/Mit: | Gerard Higgins |
Erscheinungsdatum: | 06.11.2019 |
Gewicht: | 0,348 kg |
Über den Autor
Zusammenfassung
Nominated as an outstanding Ph.D. thesis by the Stockholm University, Stockholm, Sweden
Essential background work for realization of trapped-ion qubits
Research conducted at University of Innsbruck and Stockholm University - cotutelle PhD
Inhaltsverzeichnis
Introduction.- Properties of Strontium Rydberg Ions.- Experimental Setup.- Two-Photon Rydberg Excitation.- Ion Loss by Double Ionisation.- Trap Effects.- Coherent Excitation of Rydberg States.- Summary and Outlook.
Details
Erscheinungsjahr: | 2019 |
---|---|
Fachbereich: | Atomphysik & Kernphysik |
Genre: | Mathematik, Medizin, Naturwissenschaften, Physik, Technik |
Rubrik: | Naturwissenschaften & Technik |
Medium: | Buch |
Inhalt: |
xvii
98 S. 8 s/w Illustr. 41 farbige Illustr. 98 p. 49 illus. 41 illus. in color. |
ISBN-13: | 9783030337698 |
ISBN-10: | 3030337693 |
Sprache: | Englisch |
Einband: | Gebunden |
Autor: | Higgins, Gerard |
Auflage: | 1st edition 2019 |
Hersteller: | Springer International Publishing |
Verantwortliche Person für die EU: | Springer Verlag GmbH, Tiergartenstr. 17, D-69121 Heidelberg, juergen.hartmann@springer.com |
Maße: | 241 x 160 x 13 mm |
Von/Mit: | Gerard Higgins |
Erscheinungsdatum: | 06.11.2019 |
Gewicht: | 0,348 kg |
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