Using Imperfect Semiconductor Systems for Unique Identification (e-bog) af Roberts, Jonathan
Roberts, Jonathan (forfatter)

Using Imperfect Semiconductor Systems for Unique Identification e-bog

875,33 DKK (inkl. moms 1094,16 DKK)
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 p...
E-bog 875,33 DKK
Forfattere Roberts, Jonathan (forfatter)
Forlag Springer
Udgivet 14 september 2017
Genrer TGMM
Sprog English
Format epub
Beskyttelse LCP
ISBN 9783319678917
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.