2018
DOI: 10.21467/ajgr.4.1.59-67
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A New Quantum Encryption Scheme

Abstract: The model of quantum computation has advanced very quickly in the last years. This model brings with it an efficient algorithm for factoring, namely the Shor algorithm. This means that the public key infrastructure will soon be obsolete. In this paper we propose a new quantum cryptographic scheme which aims to replace the RSA algorithm from current public key infrastructures. We analyze the security of our scheme and also, we describe the implementation of the scheme using IBM Q SDK, qiskit. We run a number of… Show more

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Cited by 11 publications
(6 citation statements)
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“…) . Different models have been developed to explain polymer‐particle reactions at the interaction zone such as Wilkes' model , Tsagaropoulos' model , Lewis' model, Tanaka's model , dual layer model and a few other models . The large interaction zone in nanocomposites increases reaction between polymer and nanoparticles which in turn modifies polymer behavior, changes morphology, reduces internal field, changes the space charge distribution, and provides scattering sites for charge carriers .…”
Section: Application Of Micro and Nano‐size Filler In High Voltage Inmentioning
confidence: 99%
“…) . Different models have been developed to explain polymer‐particle reactions at the interaction zone such as Wilkes' model , Tsagaropoulos' model , Lewis' model, Tanaka's model , dual layer model and a few other models . The large interaction zone in nanocomposites increases reaction between polymer and nanoparticles which in turn modifies polymer behavior, changes morphology, reduces internal field, changes the space charge distribution, and provides scattering sites for charge carriers .…”
Section: Application Of Micro and Nano‐size Filler In High Voltage Inmentioning
confidence: 99%
“…It also allows the users to design quantum circuits using an interactive graphical user interface and to test those circuits, both on a classical computer and on actual quantum processors. IBM experiments include quantum cryptography [34,35], quantum error correction [36,37], development of different quantum algorithms and quantum applications [38][39][40].…”
Section: Introductionmentioning
confidence: 99%
“…IBM Q Experience has now been used to perform a number of real experiments on the quantum chips. The real experiments include quantum simulation 3,[24][25][26][27][28][29][30][31][32] , developing quantum algorithms [33][34][35][36][37][38][39] , testing of quantum information theoretical tasks 27,33,[40][41][42] , quantum cryptography [43][44][45] , quantum error correction [46][47][48][49] , quantum applications 28,30,43,[49][50][51] to name a few.…”
Section: Introductionmentioning
confidence: 99%