سند چشمانداز بیست ساله جمهوری اسلامی ایران در افق ۱۴۰۴. (1382).[
لینک]
دفتر حفظ و نشر آثار حضرت آیتالله العظمی خامنهای(1393)، ابلاغ سیاستهای کلی «علم و فناوری». [
لینک]
ناصر باقری مقدم, س. س. ق. ن., عنایت الله معلمی, مسلم موسوی درچه. (1397). روششناسی تدوین اسناد ملی فناوریهای راهبردی: مرکز تحقیقات سیاست علمی کشور.
AbuGhanem, M. (2024). Photonic Quantum Computers. arXiv preprint arXiv:2409.08229.
Amer, O., Garg, V., & Krawec, W. O. (2022). A Standardized Design for Sifting in Quantum Key Distribution Software. Paper presented at the 2022 IEEE Globecom Workshops (GC Wkshps).
Arasti, M. R., & Moghaddam, N. B. (2010). Use of technology mapping in identification of fuel cell sub-technologies. international journal of hydrogen energy, 35(17), 9516-9525.
Arute, F., Arya, K., Babbush, R., Bacon, D., Bardin, J. C., Barends, R., . . . Buell, D. A. (2019). Quantum supremacy using a programmable superconducting processor. Nature, 574(7779), 505-510.
Azuma, K., Tamaki, K., & Lo, H.-K. (2015). All-photonic quantum repeaters. Nature communications, 6(1), 1-7.
Barreiro, R., Krawec, W. O., Mateus, P., Paunković, N., & Souto, A. (2022). Semi-Quantum Conference Key Agreement (SQCKA).
Bedington, R., Zhongkan, T., Chandrasekara, R., Cheng, C., Chuan, T. Y., Durak, K., . . . Oi, D. (2015). Small photon entangling quantum system (SPEQS) enabling space based quantum key distribution (QKD). Paper presented at the International Astronautical Congress, Jerusalem, Israel.
Briegel, H.-J., Dür, W., Cirac, J. I., & Zoller, P. (1998). Quantum repeaters: the role of imperfect local operations in quantum communication. Physical Review Letters, 81(26), 5932.
Cao, Y., Zhao, Y., Wang, Q., Zhang, J., Ng, S. X., & Hanzo, L. (2022). The evolution of quantum key distribution networks: On the road to the qinternet. IEEE Communications Surveys & Tutorials, 24(2), 839-894.
Chandrasekara, R. C., Bedington, R., Bai, X., Ilangovan, K., Sean, Y. Y., Naughton, D., . . . Ling, A. (2017). Demonstrating Miniaturised, entangled photon-pair sources on board nano satellites to enable future QKD missions. arXiv preprint arXiv:1710.03907.
Chen, J., Cui, C., Lawrie, B., Xue, Y., Guha, S., Eichenfield, M., . . . Yan, X. (2024). Low-Dimensional Solid-State Single-Photon Emitters. arXiv preprint arXiv:2410.22106.
Chiofalo, M. L., Smerzi, A., & Michelini, M. (2024). Editorial: Responsible research and innovation in quantum science and technologies. Frontiers in Quantum Science and Technology, 3. doi:10.3389/frqst.2024.1424698
Coccia, M. (2024). Dynamics of Converging Scientific and Technological Development in Artificial Intelligence and Quantum Technologies.
Creswell, J. W., & Creswell, J. D. (2017). Research design: Qualitative, quantitative, and mixed methods approaches: Sage publications.
Dai, H., Shen, Q., Wang, C.-Z., Li, S.-L., Liu, W.-Y., Cai, W.-Q., . . . Chen, Y.-A. (2020). Towards satellite-based quantum-secure time transfer. Nature Physics, 16(8), 848-852.
Das, A., Palesi, M., Kim, J., & Pande, P. P. (2024). Chip and Package-Scale Interconnects for General-Purpose, Domain-Specific and Quantum Computing Systems-Overview, Challenges and Opportunities. IEEE Journal on Emerging and Selected Topics in Circuits and Systems.
Deschênes, J.-D., Sinclair, L. C., Giorgetta, F. R., Swann, W. C., Baumann, E., Bergeron, H., . . . Newbury, N. R. (2016). Synchronization of distant optical clocks at the femtosecond level. Physical Review X, 6(2), 021016.
Eisaman, M. D., Fan, J., Migdall, A., & Polyakov, S. V. (2011). Invited review article: Single-photon sources and detectors. Review of scientific instruments, 82(7).
Elsayed, T. A. (2020). Deterministic secure quantum communication with and without entanglement. Physica Scripta, 96(2), 025101.
Erhard, M., Hochrainer, A., Fink, M., Handsteiner, J., Herbst, T., & Scheidl, T. (2021). How to choose the best QKD network technology: three different satellite based scenarios compared. Paper presented at the International Conference on Space Optics—ICSO 2020.
Ezratty, O. (2022). Mitigating the quantum hype. arXiv preprint arXiv:2202.01925.
Fenn, J., & Raskino, M. (2008). Mastering the hype cycle: how to choose the right innovation at the right time: Harvard Business Press.
Figueiredo, G., Ferreira, R. A., & André, P. S. (2024). Enhancing secret key distribution through advanced color modulation in visible light communication. Journal of Optical Communications and Networking, 16(8), D1-D9.
Ghalaii, M. (2019). Continuous Variable Quantum Key Distribution over Long Distances. University of Leeds,
Gramegna, M., Degiovanni, I., Calonico, D., Levi, F., & Callegaro, L. (2024). EMN-Q-Strategic Research Agenda and Quantum Technologies Roadmaps.
Gunashekar, S. (2022). Using Quantum Computers and Simulators in the Life Sciences.
Gupta, B. M., Dhawan, S. M., & Mamdapur, G. M. N. (2021). Quantum communication & networking (QCN): a scientometric assessment of global publications during 1997-20. International Journal of Information Dissemination and Technology, 11(2), 71-79.
Hadfield, R. H. (2009). Single-photon detectors for optical quantum information applications. Nature photonics, 3(12), 696-705.
Haldar, S., Agullo, I., Brady, A. J., Lamas-Linares, A., Proctor, W. C., & Troupe, J. E. (2023). Towards global time distribution via satellite-based sources of entangled photons. Physical Review A, 107(2), 022615.
Hatanpää, B. H. J. (2025). High-Field Charge Transport and Fluctuation Phenomena in Semiconductors from First Principles. California Institute of Technology,
Huang, Z., Rong, Z., Zou, X., & He, Z. (2021). Semi-quantum secure direct communication in the curved spacetime. Quantum Information Processing, 20(11), 375.
Joshi, S. K., & Ursin, R. (2018). Nanobob: a CubeSat mission concept for quantum communication experiments in an uplink configuration.
Kaltenbaek, R., Acin, A., Bacsardi, L., Bianco, P., Bouyer, P., Diamanti, E., . . . Rasel, E. (2021). Quantum technologies in space. Experimental Astronomy, 51(3), 1677-1694.
Kamin, L., Shchukin, E., Schmidt, F., & van Loock, P. (2023). Exact rate analysis for quantum repeaters with imperfect memories and entanglement swapping as soon as possible. Physical Review Research, 5(2), 023086.
Kim, T. H., & Madhavi, S. (2024). Quantum intrusion detection system using outlier analysis. Scientific Reports, 14(1), 27114.
Kimble, H. J. (2008). The quantum internet. Nature, 453(7198), 1023-1030.
Kong, X., Xin, T., Wei, S.-J., Wang, B., Wang, Y., Li, K., & Long, G.-L. (2018). Demonstration of multiparty quantum clock synchronization. Quantum Information Processing, 17, 1-17.
Krause, J. (2023). Shaping the quantum internet: Evidence of US-Chinese strategic competition over quantum technologies from interviews and patent data ERGMs. University of Southampton,
Kumar, A., de Jesus Pacheco, D. A., Kaushik, K., & Rodrigues, J. J. (2022). Futuristic view of the internet of quantum drones: review, challenges and research agenda. Vehicular Communications, 36, 100487.
Kumar, A., & Garhwal, S. (2021). State-of-the-art survey of quantum cryptography. Archives of Computational Methods in Engineering, 28, 3831-3868.
Kuppusamy, S. K., Hunger, D., Ruben, M., Goldner, P., & Serrano, D. (2024). Spin-bearing molecules as optically addressable platforms for quantum technologies. Nanophotonics, 13(24), 4357-4379.
Kwiat, P. G., Mattle, K., Weinfurter, H., Zeilinger, A., Sergienko, A. V., & Shih, Y. (1995). New high-intensity source of polarization-entangled photon pairs. Physical Review Letters, 75(24), 4337.
Ladd, T. D., Jelezko, F., Laflamme, R., Nakamura, Y., Monroe, C., & O’Brien, J. L. (2010). Quantum computers. Nature, 464(7285), 45-53.
Lee, E., Choi, H., Kim, S., & Lee, C.-W. (2024). Room Temperature Single-Photon Source of Colloidal Quantum Dots.
Lita, A. E., Miller, A. J., & Nam, S. W. (2008). Counting near-infrared single-photons with 95% efficiency. Optics express, 16(5), 3032-3040.
Lougovski, P., Parekh, O., Broz, J., Byrd, M., Chapman, J. C., Chembo, Y., . . . Larson, J. (2023). Report for the ASCR Workshop on Basic Research Needs in Quantum Computing and Networking. Retrieved from
Lvovsky, A. I., Sanders, B. C., & Tittel, W. (2009). Optical quantum memory. Nature photonics, 3(12), 706-714.
Ma, H.-X., Bao, W.-S., Li, H.-W., & Chou, C. (2016). Quantum hacking of two-way continuous-variable quantum key distribution using Trojan-horse attack. Chinese Physics B, 25(8), 080309.
Martin, V., Brito, J. P., Escribano, C., Menchetti, M., White, C., Lord, A., . . . Genay, N. (2021). Quantum technologies in the telecommunications industry. EPJ Quantum Technology, 8(1), 19.
McKenzie, W., Richards, A. M., Patel, S., Gerrits, T., Akin, T., Peil, S., . . . Li-Baboud, Y.-S. (2024). Clock synchronization characterization of the Washington DC metropolitan quantum network (DC-QNet). Applied Physics Letters, 125(16).
Memon, Q. A., Al Ahmad, M., & Pecht, M. (2024). Quantum Computing: Navigating the Future of Computation, Challenges, and Technological Breakthroughs. Quantum Reports, 6(4), 627-663.
Minhas, N. (2024). A Survey on Quantum Cryptography, its Protocols, Applications, and Challenges.
Mishra, S., & Pathak, A. (2023). Quantum and semi-quantum lottery: strategies and advantages. Quantum Information Processing, 22(7), 290.
Montanaro, A. (2016). Quantum algorithms: an overview. npj Quantum Information, 2(1), 1-8.
Nielsen, M. A., & Chuang, I. L. (2010). Quantum computation and quantum information: Cambridge university press.
Onu, P., Pradhan, A., & Mbohwa, C. (2023). Industry 4.0 and Beyond: Enabling Digital Transformation and Sustainable Growth in Industry X. 0. Paper presented at the 2023 IEEE International Conference on Industrial Engineering and Engineering Management (IEEM).
Orús, R., Mugel, S., & Lizaso, E. (2019). Quantum computing for finance: Overview and prospects. Reviews in Physics, 4, 100028.
Picciariello, F., Vedovato, F., Orsucci, D., Dominguez, P. N., Zechel, T., Avesani, M., . . . Dequal, D. (2024). Quantum-secured time transfer between precise timing facilities: a field trial with simulated satellite links. GPS Solutions, 28(1), 48.
Pirandola, S., Andersen, U. L., Banchi, L., Berta, M., Bunandar, D., Colbeck, R., . . . Ottaviani, C. (2020). Advances in quantum cryptography. Advances in optics and photonics, 12(4), 1012-1236.
Preskill, J. (2018). Quantum computing in the NISQ era and beyond. Quantum, 2, 79.
Putranto, D. S. C., Wardhani, R. W., Ji, J., & Kim, H. (2024). A Deep Inside Quantum Technology Industry Trends and Future Implications. IEEE Access.
Razavi, M., Thompson, K., Farmanbar, H., Piani, M., & Lütkenhaus, N. (2009). Physical and architectural considerations in quantum repeaters. Paper presented at the Quantum Communications Realized II.
Rong, Z., Qiu, D., Mateus, P., & Zou, X. (2021). Mediated semi-quantum secure direct communication. Quantum Information Processing, 20, 1-13.
Rotolo, D., Hicks, D., & Martin, B. R. (2015). What is an emerging technology? Research policy, 44(10), 1827-1843.
Sangouard, N., Simon, C., De Riedmatten, H., & Gisin, N. (2011). Quantum repeaters based on atomic ensembles and linear optics. Reviews of Modern Physics, 83(1), 33-80.
Scarani, V., Bechmann-Pasquinucci, H., Cerf, N. J., Dušek, M., Lütkenhaus, N., & Peev, M. (2009). The security of practical quantum key distribution. Reviews of Modern Physics, 81(3), 1301-1350.
Scheidsteger, T., Haunschild, R., Bornmann, L., & Ettl, C. (2021). Quantum technology 2.0--topics and contributing countries from 1980 to 2018. arXiv preprint arXiv:2105.08750.
Schoff, J. L. (2022). US-Japan technology policy coordination: balancing technonationalism with a globalized world: Carnegie Endowment for International Peace.
Scholten, T. L., Williams, C. J., Moody, D., Mosca, M., Hurley, W., Zeng, W. J., . . . Gambetta, J. M. (2024). Assessing the benefits and risks of quantum computers. arXiv preprint arXiv:2401.16317.
Senellart, P., Solomon, G., & White, A. (2017). High-performance semiconductor quantum-dot single-photon sources. Nature nanotechnology, 12(11), 1026-1039.
Shahrul, N. S., Hanefah, M. M., Masruki, R., Yaakub, N. A., & Mohamad, N. AWARENESS AND READINESS ON QUANTUM COMMUNICATION TECHNOLOGY AMONG THE REGULATORS, INDUSTRY PLAYERS AND ACADEMICIANS IN MALAYSIA. Management, 9(35), 21-37.
Shen, Q., Liao, S., Liu, S., Wang, J., Liu, W., Peng, C., & An, Q. (2012). Time interval analyzer with FPGA-based TDC for free space quantum key distribution: Principle and validation with prototype setup. Paper presented at the 2012 18th IEEE-NPSS Real Time Conference.
Shor, P. W. (1994). Algorithms for quantum computation: discrete logarithms and factoring. Paper presented at the Proceedings 35th annual symposium on foundations of computer science.
Shukla, C., Thapliyal, K., & Pathak, A. (2017). Semi-quantum communication: protocols for key agreement, controlled secure direct communication and dialogue. Quantum Information Processing, 16, 1-19.
Simon, C., Afzelius, M., Appel, J., Boyer De La Giroday, A., Dewhurst, S., Gisin, N., . . . Müller, J. (2010). Quantum memories: a review based on the European integrated project “qubit applications (QAP)”. The European Physical Journal D, 58, 1-22.
Singh, P., Dasgupta, R., Singh, A., Pandey, H., Hassija, V., Chamola, V., & Sikdar, B. (2024). A survey on available tools and technologies enabling quantum computing. IEEE Access.
Stilinski, D., & Potter, K. (2024). Quantum Key Distribution (QKD) for Secure Communication Networks.
Ulpiani, P., Proietti, M., Sabetta, L., Livi, L. F., Zanforlin, U., Romanelli, R., & Dispenza, M. (2024). AI-enhanced non-line of sight imaging. Paper presented at the Quantum Technologies 2024.
Urgelles, H., Garcia-Roger, D., & Monserrat, J. F. (2024). Quantum-Based Maximum Likelihood Detection in MIMO-NOMA Systems for 6G Networks. Quantum Reports, 6(4), 533-549.
Ursin, R., Tiefenbacher, F., Schmitt-Manderbach, T., Weier, H., Scheidl, T., Lindenthal, M., . . . Trojek, P. (2007). Entanglement-based quantum communication over 144 km. Nature Physics, 3(7), 481-486.
Valsalan, P., ul Hasan, N., Baig, I., Zghaibeh, M., Farooq, U., & Suhail, S. (2024). Unleashing the Potential: The Joint of 5G and 6G Technologies in Enabling Advanced IoT Communication and Sensing Systems: A Comprehensive Review and Future Prospects. Journal of Communications, 19(11).
van Loock, P., Alt, W., Becher, C., Benson, O., Boche, H., Deppe, C., . . . Michler, P. (2020). Extending quantum links: modules for fiber‐and memory‐based quantum repeaters. Advanced quantum technologies, 3(11), 1900141.
Wang, J., Shen, L., & Zhou, W. (2021). A bibliometric analysis of quantum computing literature: mapping and evidences from scopus. Technology analysis & strategic management, 33(11), 1347-1363.
Wehner, S., Elkouss, D., & Hanson, R. (2018). Quantum internet: A vision for the road ahead. Science, 362(6412), eaam9288.
Xu, L.-C., Chen, H.-Y., Zhou, N.-R., & Gong, L.-H. (2020). Multi-party semi-quantum secure direct communication protocol with cluster states. International Journal of Theoretical Physics, 59, 2175-2186.
Xu, Y., Li, Z., Wang, C., & Zhu, H. (2021). Quantum sealed-bid auction protocol for simultaneous ascending auction with GHZ states. Quantum Information Processing, 20, 1-14.
Ye, T., Zhou, N., Luo, M., Nayak, A., & Chen, X. (2023). Multiparty secure quantum and semiquantum computations: Frontiers Media SA.
Yin, J., Cao, Y., Li, Y.-H., Liao, S.-K., Zhang, L., Ren, J.-G., . . . Dai, H. (2017). Satellite-based entanglement distribution over 1200 kilometers. Science, 356(6343), 1140-1144.
Yu, Y., Liu, S., Lee, C.-M., Michler, P., Reitzenstein, S., Srinivasan, K., . . . Liu, J. (2023). Telecom-band quantum dot technologies for long-distance quantum networks. Nature nanotechnology, 18(12), 1389-1400.
Zhang, Q., Lai, H., Pieprzyk, J., & Pan, L. (2022). An improved quantum network communication model based on compressed tensor network states. Quantum Information Processing, 21(7), 253.
Zhao, W., Shi, R., & Ruan, X. (2021). High-efficiency continuous-variable quantum digital signature protocol for signing multi-bit messages. Laser Physics Letters, 18(3), 035201.
Zheng, T., Chang, Y., Yan, L., & Zhang, S.-B. (2020). Semi-quantum proxy signature scheme with quantum walk-based teleportation. International Journal of Theoretical Physics, 59(10), 3145-3155.
Zhou, R.-G., & Zhang, X. (2021). Controlled deterministic secure semi-quantum communication. International Journal of Theoretical Physics, 60(5), 1767-1782.
Zhou, Y.-H., Qin, S.-F., Shi, W.-M., & Yang, Y.-G. (2022). Measurement-device-independent continuous variable semi-quantum key distribution protocol. Quantum Information Processing, 21(8), 303.