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Jiang, Y., & Zhang, J. (2024). Profitability Analysis of Time-Restricted Double-Spending Attack on PoW-Based Large Scale Blockchain With the Aid of Multiple Types of Attacks, IEEE Transactions on Information Forensics and Security, 19, 8155–8171. |
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Yue, Z., Zhu, H., Chang, X., Mišić, J., Mišić, V. B., & Fan, J. 2024. MBCT: A Monero-Based Covert Transmission Approach with On-chain Dynamic Session Key Negotiation. |
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Shi, R., Ge, Y., Lan, L., Peng, Z., Lin, S., & Li, L. 2024, Deanonymizing Transactions Originating from Monero Tor Hidden Service Nodes. Paper presented at Companion Proceedings of the ACM on Web Conference 2024. |
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Amrollahi, A., & Mofrad, M. A. 2023, Towards unraveling power dynamics in Information Systems research: A systematic literature review through the lens of activity theory. Paper presented at ACIS 2023. |
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Duan, J., Zheng, S., Wang, W., Wang, L., Hu, X., & Gu, L. (2024). Concise RingCT Protocol Based on Linkable Threshold Ring Signature, IEEE Transactions on Dependable and Secure Computing, (1), 1–15. |
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Pitu, F., & Gaitan, N. C. 2023, July, Survey of security, performance, and profitability of Monero: a browser-based cryptocurrency. Paper presented at 2023 3rd International Conference on Electrical, Computer, Communications and Mechatronics Engineering (ICECCME). |
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Tiemann, T., Berndt, S., Eisenbarth, T., & Liśkiewicz, M. 2023, July, “Act natural!”: Exchanging Private Messages on Public Blockchains. Paper presented at 2023 IEEE 8th European Symposium on Security and Privacy (EuroS&P). |
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Zhang, T. (2023). Privacy Evaluation of Blockchain Based Privacy Cryptocurrencies: A Comparative Analysis of Dash, Monero, Verge, Zcash, and Grin, IEEE Transactions on Sustainable Computing, 8(4), 574–582. |
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Luo, M., Zhou, J., & Yang, P. (2023). RATS: A regulatory anonymous transaction system based on blockchain, Journal of Parallel and Distributed Computing, 182, 104751. |
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Wang, X., Lin, C., Huang, X., & He, D. (2023). Anonymity-Enhancing Multi-Hop Locks for Monero-Enabled Payment Channel Networks, IEEE Transactions on Information Forensics and Security, 1–1. |
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Zhang, J., Su, M., Liu, X., & Wang, G. 2024, May, Springproofs: Efficient Inner Product Arguments for Vectors of Arbitrary Length. Paper presented at 2024 IEEE Symposium on Security and Privacy (SP). |
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Badertscher, C., Sedaghat, M., & Waldner, H. 2023. Fine-Grained Accountable Privacy via Unlinkable Policy-Compliant Signatures. [Cryptology ePrint Archive, Paper 2023/1070]. |
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Buccafurri, F., De Angelis, V., & Lazzaro, S. 2023, May 25–26, A Traffic-Analysis Proof Solution to Allow K-Anonymous Payments in Pseudonymous Blockchains. Unpublished paper presented at 5th Distributed Ledger Technology Workshop. |
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Zhang, T., Li, B., Zhu, Y., Han, T., & Wu, Q. (2023). Covert channels in blockchain and blockchain based covert communication: Overview, state-of-the-art, and future directions, Computer Communications, 205, 136–146. |
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Movsowitz Davidow, D., Manevich, Y., & Toch, E. 2023, Privacy-Preserving Transactions with Verifiable Local Differential Privacy. Paper presented at 5th Conference on Advances in Financial Technologies (AFT 2023). |
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Naik, A., Yeniaras, E., Hellstern, G., Prasad, G., & Vishwakarma, S. K. L. P. (2023). From Portfolio Optimization to Quantum Blockchain and Security: A Systematic Review of Quantum Computing in Finance, arXiv preprint arXiv:2307.01155. |
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Wang, X., Lin, L., & Wang, Y. (2023). Stealth Address Schemes With Fast Retrievability Based On Subgroup Membership Assumptions Related To Factoring, The Computer Journal, bxad056. |
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Chung, H., Han, K., Ju, C., Kim, M., & Seo, J. H. (2022). Bulletproofs+: Shorter Proofs for a Privacy-Enhanced Distributed Ledger, IEEE Access, 10, 42067–42082. |
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Noether, S. UNDERSTANDING GE FROMFE FROMBYTES VARTIME. |
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Rucknium, R. Fully Specified Estimation Plan for Optimal Static Parametric Estimation of Arbitrary Distributions (OSPEAD) Public Version. Monero Research Lab. |
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Wijaya, D. A., Liu, J., Steinfeld, R., & Liu, D. 2018, Monero ring attack: Recreating zero mixin transaction effect. Paper presented at 2018 17th IEEE international conference on trust, security and privacy in computing and communications/12th IEEE international conference on big data science and engineering (TrustCom/BigDataSE). |
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Leevik, A., Beliaev, V., Stasenko, B., Davydov, V., & Bezzateev, S. 2020, Review and Analysis of the Classical and Post-Quantum Ring Signature Algorithms. Paper presented at 2020 12th International Congress on Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT). |
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Christensen, S. 2018. A Comparative Study of Privacy-Preserving Cryptocurrencies: Monero and ZCash. University of Birmingham. |
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Seguias, B. E. K. 2018. Monero’s Building Blocks Part 10 of 10--Stealth addresses. |
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Seguias, B. E. K. 2018. Monero’s Building Blocks Part 9 of 10--RingCT and anatomy of Monero transactions. |
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Seguias, B. E. K. 2018. Monero’s Building Blocks Part 8 of 10--Introduction to Pedersen Commitments and Confidential Transactions. |
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Seguias, B. E. K. 2018. Monero’s Building Blocks Part 7 of 10--Multilayered Linkable Spontaneous Anonymous Group (MLSAG) signature scheme. |
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Seguias, B. E. K. 2018. Monero’s building blocks part 6 of 10--linkable spontaneous anonymous group (lsag) signature scheme. |
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Seguias, B. E. K. 2018. Monero’s Building Blocks Part 5 of 10--Cryptonote’s linkable ring signature scheme. |
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Seguias, B. E. K. 2018. Monero’s Building Blocks Part 4 of 10--Herranz & Saez Generic Ring Signature Scheme [1]. |
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Seguias, B. E. K. 2018. Monero’s Building Blocks Part 3 of 10--Introduction to Ring Signatures. |
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Seguias, B. E. K. 2018. Monero’s Building Blocks Part 2 of 10--Pointcheval & Stern’s Generic Signature Scheme. |
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Seguias, B. E. K. 2018. Monero’s Building Blocks Part 1 of 10--Prerequisites. |
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Liu, Q., Liu, Z., Long, Y., Liu, Z., Sui, Z., & Sun, S., et al. 2019, Making Monero Hard-to-Trace and More Efficient. Paper presented at 2019 18th IEEE International Conference On Trust, Security And Privacy In Computing And Communications/13th IEEE International Conference On Big Data Science And Engineering (TrustCom/BigDataSE). |
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Aziz, A. B. A., Ngah, S. B., Dun, Y. T., & Bee, T. F. (2020). Coinhive’s Monero Drive-by Crypto-jacking, IOP Conference Series: Materials Science and Engineering, 769(1), 12065. |
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Moreno-Sánchez, P., Blue, A., Le, D. V., Noether, S., Goodell, B., & Kate, A. 2020, DLSAG: Non-interactive Refund Transactions for Interoperable Payment Channels in Monero. Paper presented at Financial Cryptography and Data Security. |
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Erg"un, Z. C., & KARABIYIK, B. K. Forecasting Monero Prices with a Machine Learning Algorithm, Eski{\c{s}}ehir Osmangazi {\"U}niversitesi {\.I}ktisadi ve {\.I}dari Bilimler Dergisi, 16(3), 651–663. |
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