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Marius Nagy
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2020 – today
- 2023
- [j27]Naya Nagy, Matthew Stuart-Edwards, Marius Nagy, Liam Mitchell, Athanasios Zovoilis:
Quantum analysis of squiggle data. BioData Min. 16(1) (2023) - [j26]Naya Nagy, Marius Nagy, Ghadeer Alazman, Zahra Hawaidi, Saja Mustafa Alsulaibikh, Layla Alabbad, Sadeem Alfaleh, Areej Aljuaid:
Quantum Honeypots. Entropy 25(10): 1461 (2023) - [j25]Marius Nagy, Naya Nagy:
Quantum advantage in deciding NP-complete problems. Quantum Inf. Process. 22(3): 133 (2023) - 2022
- [j24]Robert Benkoczi, Daya Ram Gaur, Naya Nagy, Marius Nagy, Shahadat Hossain:
Quantum Bitcoin Mining. Entropy 24(3): 323 (2022) - [j23]Marius Nagy, Naya Nagy:
Intrusion Detection Quantum Sensor Networks. Sensors 22(21): 8092 (2022) - 2020
- [j22]Marius Nagy, Naya Nagy:
Quantum Steganography by Harnessing Entanglement as a Degree of Freedom. IEEE Access 8: 213671-213681 (2020) - [j21]Marius Nagy, Naya Nagy:
Image processing: why quantum? Quantum Inf. Comput. 20(7&8): 616-626 (2020) - [j20]Dhoha A. Almubayedh, Ghadeer Alazman, Mashael Alkhalis, Manal Alabdali, Naya Nagy, Marius Nagy, Ahmet Emin Tatar, Malak Alfosail, Atta-ur-Rahman, Norah Almubairik:
Quantum bit commitment on IBM QX. Quantum Inf. Process. 19(2): 55 (2020) - [j19]Marius Nagy, Naya Nagy:
Coding in the entanglement domain. Quantum Inf. Process. 19(4): 134 (2020)
2010 – 2019
- 2019
- [p1]Marius Nagy, Naya Nagy:
On the Importance of Parallelism for the Security of Quantum Protocols. From Parallel to Emergent Computing 2019: 3-30 - 2018
- [j18]Marius Nagy, Naya Nagy:
An Information-Theoretic Perspective on the Quantum Bit Commitment Impossibility Theorem. Entropy 20(3): 193 (2018) - 2016
- [j17]Naya Nagy, Marius Nagy, Paul Hodor:
Cryptography and Information Protection in the Living World. Int. J. Unconv. Comput. 12(2-3): 133-143 (2016) - [j16]Naya Nagy, Marius Nagy:
Quantum Bit Commitment - Within an Equivalence Class. Int. J. Unconv. Comput. 12(5-6): 413-432 (2016) - [j15]Marius Nagy, Naya Nagy:
Quantum Oblivious Transfer: a secure practical implementation. Quantum Inf. Process. 15(12): 5037-5050 (2016) - [j14]Marius Nagy, Naya Nagy:
Quantum-based secure communications with no prior key distribution. Soft Comput. 20(1): 87-101 (2016) - [c10]Ahmet Emin Tatar, Marius Nagy, Naya Nagy:
The Cost of Breaking a Quantum Bit Commitment Protocol on Equivalence Classes. SECRYPT 2016: 419-423 - 2015
- [j13]Naya Nagy, Marius Nagy, Selim G. Akl:
Carving Secret Messages out of Public Information. J. Comput. Sci. 11(1): 64-70 (2015) - 2014
- [c9]Naya Nagy, Marius Nagy:
Unconditionally Secure Quantum Bit Commitment Protocol Based on Incomplete Information. TPNC 2014: 134-143 - 2013
- [c8]Marius Nagy, Naya Nagy:
General Quantum Encryption Scheme Based on Quantum Memory. TPNC 2013: 169-180 - [c7]Marius Nagy, Naya Nagy:
Quantum Secret Communication without an Encryption Key. TPNC 2013: 181-192 - 2010
- [j12]Naya Nagy, Marius Nagy, Selim G. Akl:
Hypercomputation in a Cryptographic Setting: Solving the Identity Theft Problem Using Quantum Memories? Int. J. Unconv. Comput. 6(5): 375-398 (2010) - [j11]Naya Nagy, Marius Nagy, Selim G. Akl:
Quantum security in wireless sensor networks. Nat. Comput. 9(4): 819-830 (2010) - [j10]Marius Nagy, Selim G. Akl:
Coping with Decoherence: Parallelizing the Quantum Fourier Transform. Parallel Process. Lett. 20(3): 213-226 (2010) - [j9]Marius Nagy, Selim G. Akl:
Entanglement Verification with an Application to Quantum Key Distribution Protocols. Parallel Process. Lett. 20(3): 227-237 (2010) - [j8]Naya Nagy, Marius Nagy, Selim G. Akl:
Key Distribution versus Key Enhancement in Quantum Cryptography. Parallel Process. Lett. 20(3): 239-250 (2010)
2000 – 2009
- 2009
- [j7]Marius Nagy:
Locating the Median of a Tree in Real Time. Parallel Process. Lett. 19(1): 39-55 (2009) - 2008
- [c6]Marius Nagy, Selim G. Akl:
Entanglement verification with application to key distribution protocols. ITSL 2008: 99-105 - [c5]Marius Nagy, Selim G. Akl, Sean Kershaw:
Key Distribution based on Quantum Fourier Transform. SECRYPT 2008: 263-269 - [c4]Naya Nagy, Marius Nagy, Selim G. Akl:
Quantum Wireless Sensor Networks. UC 2008: 177-188 - 2007
- [j6]Marius Nagy, Selim G. Akl:
Quantum computing: beyond the limits of conventional computation. Int. J. Parallel Emergent Distributed Syst. 22(2): 123-135 (2007) - [j5]Marius Nagy, Selim G. Akl:
Parallelism in Quantum Information Processing Defeats the Universal Computer. Parallel Process. Lett. 17(3): 233-262 (2007) - 2006
- [j4]Marius Nagy, Selim G. Akl:
Real-time minimum vertex cover for two-terminal series-parallel graphs. Int. J. High Perform. Comput. Netw. 4(5/6): 347-356 (2006) - [j3]Marius Nagy, Selim G. Akl:
Quantum Measurements and Universal Computation. Int. J. Unconv. Comput. 2(1): 73-88 (2006) - [j2]Marius Nagy, Selim G. Akl:
Computing nearest neighbors in real time. J. Parallel Distributed Comput. 66(3): 359-366 (2006) - [j1]Marius Nagy, Selim G. Akl:
Quantum computation and quantum information. Int. J. Parallel Emergent Distributed Syst. 21(1): 1-59 (2006) - [c3]Marius Nagy, Selim G. Akl:
Coping with Decoherence: Parallelizing the Quantum Fourier Transform. PDCS 2006: 108-113 - 2005
- [c2]Marius Nagy, Selim G. Akl:
On the Importance of Parallelism for Quantum Computation and the Concept of a Universal Computer. UC 2005: 176-190 - 2002
- [c1]Marius Nagy, Selim G. Akl:
Locating the Median of a Tree in Real Time. IASTED PDCS 2002: 108-113
Coauthor Index
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