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{ "item_title" : "Focused Ion Beam Isotopic Engineering and Electrical Detection of Group-V Donors for Silicon-Based Quantum Computation", "item_author" : [" Ravi Acharya "], "item_description" : "This book reports experimental work delivering a route to the successful isotopic enrichment of 28-silicon for providing a solid-state spin vacuum platform suitable for quantum computing. The levels of isotopic purification achieved reduce the nuclear spin carrying 29-silicon isotope to below 3 parts-per-million (ppm), while also reducing 30-silicon to below 1 ppm and removing other impurities. The book also presents the first reported electrically detected magnetic resonance spectroscopy study of the magnetic clock transition in 75-arsenic doped silicon. This is of interest to those developing donor-based qubit systems for quantum technologies as these transitions show reduced sensitivity to otherwise deleterious magnetic field fluctuations. Overall, the thesis represents a significant advance in the state-of-the-art relating to advanced semiconductor platforms for quantum technologies.", "item_img_path" : "https://covers2.booksamillion.com/covers/bam/3/03/232/345/3032323452_b.jpg", "price_data" : { "retail_price" : "169.99", "online_price" : "169.99", "our_price" : "169.99", "club_price" : "169.99", "savings_pct" : "0", "savings_amt" : "0.00", "club_savings_pct" : "0", "club_savings_amt" : "0.00", "discount_pct" : "10", "store_price" : "" } }
Focused Ion Beam Isotopic Engineering and Electrical Detection of Group-V Donors for Silicon-Based Quantum Computation|Ravi Acharya

Focused Ion Beam Isotopic Engineering and Electrical Detection of Group-V Donors for Silicon-Based Quantum Computation

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Overview

This book reports experimental work delivering a route to the successful isotopic enrichment of 28-silicon for providing a solid-state spin vacuum platform suitable for quantum computing. The levels of isotopic purification achieved reduce the nuclear spin carrying 29-silicon isotope to below 3 parts-per-million (ppm), while also reducing 30-silicon to below 1 ppm and removing other impurities. The book also presents the first reported electrically detected magnetic resonance spectroscopy study of the magnetic clock transition in 75-arsenic doped silicon. This is of interest to those developing donor-based qubit systems for quantum technologies as these transitions show reduced sensitivity to otherwise deleterious magnetic field fluctuations. Overall, the thesis represents a significant advance in the state-of-the-art relating to advanced semiconductor platforms for quantum technologies.

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Details

  • ISBN-13: 9783032323453
  • ISBN-10: 3032323452
  • Publisher: Springer
  • Publish Date: November 2026
  • Page Count: 148

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