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2909 - 面向未来的数据:量子计算时代的量子安全加密.pdf

上传人: 竿*** 编号:982836 2025-11-29 28页 2.37MB

1、Orlando,FLOctober 69IBM TechXchange 20252909Future Proof Your DataPaul SchweigertIBM,Senior Software EngineerMichael MaximilienIBM,Distinguished EngineerFuture Proof Your Data:Quantum-Safe Encryption in the Quantum Computing AgeAgenda01020304Understand the RiskBecoming Quantum SafeProtecting Applica

2、tionsNext StepsIBM TechXchange|2025 IBM CorporationAgenda01020304Understand the RiskBecoming Quantum SafeProtecting ApplicationsNext StepsIBM TechXchange|2025 IBM CorporationWhy Quantum?IBM TechXchange|2025 IBM Corporation4Ex:Shors Algorithm for FactoringIBM TechXchange|2025 IBM Corporation5IBM Tech

3、Xchange|2025 IBM Corporation6IBM TechXchange|2025 IBM Corporation7IBM TechXchange|2025 IBM Corporation8Source:https:/globalriskinstitute.orgAgenda01020304Understand the RiskBecoming Quantum SafeProtecting ApplicationsNext StepsIBM TechXchange|2025 IBM CorporationIBM TechXchange|2025 IBM Corporation1

4、0IBM TechXchange|2025 IBM Corporation11Open SourceTo advance the adoption of post-quantum cryptography,by producing high-assurance software implementations of standardized algorithms,and supporting the continued development and standardization of new post-quantum algorithms with software for evaluat

5、ion and prototyping.IBM TechXchange|2025 IBM Corporation12https:/pqca.orgInitial Projects OverviewIBM TechXchange|2025 IBM Corporation13Becoming Quantum SafeDiscoverDiscover:Scan source and object code to locate cryptographic assets,dependencies,and vulnerabilities.Build a cryptography bill of mater

6、ials(CBOM).ObserveObserve:Create a dynamic cryptographic inventory to guide remediation.Analyze cryptographic posture and compliance to prioritize risks.TransformTransform:Learn and apply quantum-safe remediation patterns in a development environment.Prepare to deploy quantum-safe solutions to your

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根据《Future Proof Your Data: Quantum-Safe Encryption in the Quantum Computing Age》的内容,以下是全文关键点: 1. **量子计算威胁**:量子计算机可能在未来破解现有的加密技术,如RSA和ECC。 2. **Shor算法**:量子计算机能够使用Shor算法快速分解大数,威胁到基于大数分解的加密算法。 3. **量子安全加密**:为了应对量子计算威胁,需要采用量子安全加密技术。 4. **开源项目**:IBM参与开源项目,推动后量子密码学的标准化和实施。 5. **量子安全流程**:包括发现、观察、转换和保护应用,以实现量子安全。 6. **具体实施**:例如,配置OpenSSL使用Kyber算法,启用PQC在Web应用防火墙中,配置Istio等。 7. **下一步行动**:学习后量子密码学,开始对加密进行盘点。
未来安全之道?" "如何为应用筑起量子防线?" 量子计算时代的加密变革"
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