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量子跃迁:重塑科技格局.pdf

上传人: 竿*** 编号:981425 2025-11-29 28页 1.94MB

1、Quantum Shift:Rewiring the Tech LandscapeTeena IdnaniSenior Vice President JPMCLinkedIn:teenaidnaniWhy Quantum?Qubits Over BitsQuantum Opportunities and ThreatsCurrent Landscape&RoadmapPreparing for Quantum FutureOutline of the talkWhy Quantum?Food SecuritySustainable EnergyClimate ChangeEconomic In

2、equalityDisease ResearchWater ScarcityCurrent Global ChallengesWhy Classical Computers Struggle with Global Challenges?ComplexityIntricate problems with many interdependent variablesScaleExponentially growing data and computational requirementsOptimizationSolving for the best solutions among vast po

3、ssibilitiesEnter Quantum Computing-Qubits Over Bits7Quantum Computing Processing of information using Quantum PhysicsClassical computerQuantum computerWhat makes Quantum Computing powerful?Roadblocks or Why they are not there yet?The ChallengeThe ParadoxConstantly losing to the environment.The unive

4、rse is always looking.Need to isolate quantum systems,yet interact with them to process information.Path to Fault Tolerant Quantum Computing(FTQC)“If you think you understand quantum mechanics,you dont understand quantum mechanics”Richard FeynmanOpportunities and Threats from Quantum ComputingTransf

5、orming industries through quantum innovationPharmaceuticalsDrug DiscoveryProtein Folding SimulationPersonalised MedicineLogisticsRoute OptimisationSupply Chain ManagementFleet schedulingFinanceRisk AnalysisFraud DetectionPortfolio OptimisationAutomotiveBattery ChemistryTraffic Flow OptimisationAuton

6、omous Vehicle algorithmsThreat from Quantum Computers Shors AlgorithmMost secure communications rely on RSA and ECC protocols.Based on the extreme difficulty of factoring large numbers into their prime factors.1994 Peter Shor discovered a Quantum Algorithm to do this efficiently.A sufficiently large

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根据《Quantum Shift: Rewiring the TechLandscape》的内容,以下是全文关键点的概括: 1. **量子计算的重要性**:量子计算利用量子物理原理,超越传统计算机,解决复杂问题,如气候变化、疾病研究和经济不平等。 2. **量子计算的优势**:处理信息速度快,能优化复杂系统,如药物发现和物流。 3. **量子计算的挑战**:量子系统难以隔离和稳定,需要克服环境干扰。 4. **量子计算的发展历程**:从D-Wave的128量子比特计算机到IBM的127量子比特处理器,再到Google的53量子比特量子霸权。 5. **量子计算的未来**:分为近中期(1-5年)的NISQ时代,中期(5-10年)的容错量子计算机,以及长期(10年以上)的大规模量子计算机革命。 6. **准备量子未来**:包括培养量子人才、投资基础设施、促进研究合作和建立伦理框架。 7. **行动建议**:学习、网络、使用量子计算案例和量子即服务(QCaaS)。
未来已来?" 破解未来密码?" 你准备好了吗?"
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