Jonathan Roberts 
Using Imperfect Semiconductor Systems for Unique Identification [PDF ebook] 

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This thesis describes novel devices for the secure identification of objects or electronic systems. The identification relies on the the atomic-scale uniqueness of semiconductor devices by measuring a macroscopic quantum property of the system in question. Traditionally, objects and electronic systems have been securely identified by measuring specific characteristics: common examples include passwords, fingerprints used to identify a person or an electronic device, and holograms that can tag a given object to prove its authenticity. Unfortunately, modern technologies also make it possible to circumvent these everyday techniques.
Variations in quantum properties are amplified by the existence of atomic-scale imperfections. As such, these devices are the hardest possible systems to clone. They also use the least resources and provide robust security. Hence they have tremendous potential significance as a means of reliably telling the good guys from the bad.

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表中的内容

An Introduction to Security Based on Physical Disorder.- An Introduction to Semiconductors and Quantum Confinement.- Sample Preparation and Experimental Techniques.- Unique Identification with Resonant Tunneling Diodes.- Langmuir-Blodgett Deposition of 2D Materials for Unique Identification.- Building Optoelectronic Heterostructures with the Langmuir-Blodgett Technique.- Conclusions and Future Work.

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语言 英语 ● 格式 PDF ● 网页 123 ● ISBN 9783319678917 ● 文件大小 5.5 MB ● 出版者 Springer International Publishing ● 市 Cham ● 国家 CH ● 发布时间 2017 ● 下载 24 个月 ● 货币 EUR ● ID 5235976 ● 复制保护 社会DRM

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