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Modern and Post-Quantum Cryptography Implementation Training Courses


Summary

Modern and Post-Quantum Cryptography Implementation Training Courses by The British Academy for Training and Development provide a corporate-focused framework for professionals responsible for protecting sensitive information, digital infrastructure, applications, communications, and enterprise systems against evolving cyber threats. The course focuses on the practical implementation of modern cryptographic approaches while preparing organisations for the security implications of quantum computing.

As quantum computing capabilities develop, traditional public-key cryptographic mechanisms may face significant future risks. Organisations therefore need structured strategies for evaluating cryptographic dependencies, identifying vulnerable systems, planning migration pathways, and implementing suitable post-quantum mechanisms. This course addresses these requirements through a practical focus on modern and post-quantum cryptography, cryptographic architecture, key management, secure implementation, and transition planning.

The programme examines major developments in lattice-based cryptography and the role of standardised post-quantum algorithms in enterprise security. Participants gain insight into Kyber for key encapsulation and Dilithium for digital signatures, alongside the broader NIST standardisation process and its implications for organisational cybersecurity strategies.

The course also considers established cryptographic technologies such as elliptic curve cryptography and examines how organisations can manage coexistence between established and post-quantum mechanisms during migration. This is particularly relevant for organisations operating complex technology environments where cryptographic systems are embedded across applications, databases, networks, cloud platforms, identity systems, APIs, financial transactions, and connected devices.

The British Academy for Training and Development structures this programme around corporate requirements, enabling participants to assess cryptographic risk, contribute to security architecture decisions, support migration programmes, and establish implementation practices aligned with organisational security objectives.

This programme is offered under the Cybersecurity and Digital Security category and is suitable for organisations seeking to strengthen long-term cryptographic resilience and establish practical approaches to post-quantum security readiness.

Objectives and target group

The Modern and Post-Quantum Cryptography Implementation Training Courses aim to enable participants to:

  • Understand the strategic importance of modern and post-quantum cryptography for corporate cybersecurity.
  • Analyse the security challenges created by emerging quantum computing capabilities.
  • Assess the limitations and continuing applications of conventional public-key cryptography.
  • Understand the principles and practical applications of lattice-based cryptography.
  • Examine the architecture and operational role of Kyber in key encapsulation.
  • Understand Dilithium and its application to post-quantum digital signatures.
  • Analyse the NIST standardisation process and its relevance to enterprise cryptographic planning.
  • Evaluate cryptographic dependencies across applications, networks, infrastructure, and data environments.
  • Develop practical approaches for identifying cryptographic assets and vulnerable dependencies.
  • Compare traditional public-key mechanisms with emerging post-quantum alternatives.
  • Examine the role of elliptic curve cryptography within existing enterprise security architectures.
  • Support cryptographic migration and transition planning across complex technology environments.
  • Understand hybrid cryptographic approaches during the transition to post-quantum security.
  • Strengthen organisational approaches to cryptographic key management and key lifecycle governance.
  • Evaluate implementation considerations for key encapsulation mechanisms and digital signatures.
  • Identify operational, interoperability, performance, and integration considerations associated with post-quantum technologies.
  • Contribute to enterprise cryptographic architecture and security policy development.
  • Establish practical controls for managing cryptographic implementation risks.
  • Support security teams in developing post-quantum readiness assessments.
  • Improve organisational capability to respond to long-term cryptographic threats.
  • Apply structured decision-making approaches when evaluating cryptographic technologies and migration priorities.

Target Audience

The Modern and Post-Quantum Cryptography Implementation Training Courses are designed for professionals who are involved in cybersecurity, information security, technology architecture, digital infrastructure, cryptographic systems, risk management, and enterprise technology operations.

The programme is particularly relevant for:

  • Chief Information Security Officers and senior cybersecurity leaders.
  • Cybersecurity managers and information security managers.
  • Security architects and enterprise architects.
  • Cryptography professionals and security engineers.
  • Network security specialists.
  • Information security analysts.
  • Cloud security professionals.
  • Application security professionals.
  • Infrastructure and systems security specialists.
  • Identity and access management professionals.
  • IT risk and compliance managers.
  • Technology risk professionals.
  • Security operations managers.
  • Digital transformation leaders.
  • Technology managers responsible for security modernisation.
  • Software engineers involved in secure application development.
  • Professionals responsible for cryptographic key management.
  • Risk professionals assessing emerging technology threats.
  • IT auditors reviewing cybersecurity and cryptographic controls.
  • Consultants supporting cybersecurity transformation programmes.
  • Professionals responsible for long-term security architecture and technology planning.

The course can also support senior technology and business stakeholders who need to understand the organisational implications of post-quantum migration without becoming directly involved in cryptographic implementation.

Course Content

Modules

Module 1: Modern Cryptography and Enterprise Security

  • Foundations of modern cryptography.
  • Symmetric and asymmetric cryptographic mechanisms.
  • Encryption, authentication, integrity, and non-repudiation.
  • Public-key infrastructure and enterprise security.
  • Cryptographic algorithms within corporate technology environments.
  • Security requirements for confidential business information.
  • Cryptographic dependencies across enterprise applications.
  • Relationship between cryptography, identity, access control, and secure communications.
  • Contemporary cryptographic implementation challenges.
  • Governance requirements for enterprise cryptographic systems.

Module 2: Quantum Computing and Cryptographic Risk

  • Quantum computing concepts relevant to cybersecurity.
  • Potential impact of quantum algorithms on established cryptographic systems.
  • Risks associated with vulnerable public-key mechanisms.
  • Long-term confidentiality and data protection considerations.
  • Harvest now, decrypt later risks.
  • Identifying information requiring long-term protection.
  • Assessing quantum-related cryptographic exposure.
  • Business implications of cryptographic disruption.
  • Developing organisational awareness of quantum security.
  • Establishing a strategic approach to quantum-resistant security.

Module 3: Post-Quantum Cryptography Fundamentals

  • Principles of post-quantum cryptography.
  • Objectives of quantum-resistant cryptographic mechanisms.
  • Major post-quantum cryptographic approaches.
  • Lattice-based cryptography and its security foundations.
  • Hash-based cryptographic approaches.
  • Code-based cryptography.
  • Multivariate cryptographic approaches.
  • Cryptographic assumptions and attack resistance.
  • Performance and implementation considerations.
  • Selecting appropriate post-quantum mechanisms for corporate environments.

Module 4: Lattice-Based Cryptography

  • Fundamentals of lattice-based cryptography.
  • Mathematical concepts supporting lattice-based security.
  • Lattice problems and cryptographic hardness.
  • Applications of lattice-based approaches.
  • Advantages and implementation considerations.
  • Security assumptions and threat analysis.
  • Lattice-based key establishment.
  • Lattice-based digital signatures.
  • Performance considerations in enterprise systems.
  • Practical integration challenges.

Module 5: Kyber and Key Encapsulation

  • Overview of Kyber and its role in post-quantum security.
  • Key encapsulation mechanisms and their purpose.
  • Key generation, encapsulation, and decapsulation concepts.
  • Secure key establishment using post-quantum mechanisms.
  • Kyber implementation considerations.
  • Integration with existing secure communication systems.
  • Key lifecycle management.
  • Cryptographic key storage and protection.
  • Performance and interoperability considerations.
  • Enterprise migration considerations for key encapsulation.

Module 6: Dilithium and Post-Quantum Digital Signatures

  • Fundamentals of post-quantum digital signatures.
  • Dilithium and its role in quantum-resistant authentication.
  • Digital signing and verification processes.
  • Certificate and identity considerations.
  • Signature implementation within enterprise applications.
  • Secure software and document signing.
  • Authentication and integrity requirements.
  • Key generation and lifecycle management.
  • Performance considerations for digital signatures.
  • Integration challenges within existing public-key infrastructures.

Module 7: NIST Standardisation and Cryptographic Transition

  • Overview of NIST standardisation activities.
  • Importance of cryptographic standards for corporate security.
  • Post-quantum algorithm standardisation.
  • Understanding standardised algorithm families.
  • Security levels and implementation considerations.
  • Organisational implications of standardisation.
  • Technology procurement and vendor evaluation.
  • Maintaining cryptographic agility.
  • Managing standards-driven migration programmes.
  • Aligning enterprise security architecture with evolving standards.

Module 8: Elliptic Curve Cryptography and Existing Systems

  • Fundamentals of elliptic curve cryptography.
  • Applications of elliptic curve mechanisms in enterprise environments.
  • Elliptic curve key exchange and digital signatures.
  • Existing dependencies on elliptic curve cryptography.
  • Identifying systems using elliptic curve mechanisms.
  • Security and lifecycle considerations.
  • Relationship between established cryptography and post-quantum technologies.
  • Migration challenges for legacy applications.
  • Compatibility and interoperability requirements.
  • Planning for cryptographic transition.

Module 9: Cryptographic Inventory and Risk Assessment

  • Building an enterprise cryptographic inventory.
  • Identifying cryptographic algorithms across technology environments.
  • Mapping certificates, keys, protocols, applications, and infrastructure.
  • Identifying vulnerable cryptographic dependencies.
  • Assessing business-critical cryptographic assets.
  • Prioritising systems according to risk and business impact.
  • Identifying legacy cryptographic technologies.
  • Establishing cryptographic ownership and accountability.
  • Developing cryptographic risk registers.
  • Supporting executive-level security reporting.

Module 10: Post-Quantum Migration Strategies

  • Developing an organisational post-quantum migration roadmap.
  • Establishing migration priorities.
  • Evaluating applications and infrastructure readiness.
  • Planning technology replacement and upgrade cycles.
  • Managing legacy systems.
  • Implementing hybrid cryptographic approaches.
  • Cryptographic agility and future algorithm replacement.
  • Vendor and technology dependency management.
  • Testing post-quantum implementations.
  • Managing migration risks across distributed environments.

Module 11: Implementation, Integration and Operational Security

  • Integrating post-quantum mechanisms into enterprise environments.
  • Application and infrastructure integration.
  • Secure implementation principles.
  • Key management and certificate management.
  • API and communication security considerations.
  • Cloud and hybrid infrastructure requirements.
  • Performance and scalability considerations.
  • Interoperability and compatibility testing.
  • Monitoring cryptographic implementations.
  • Managing operational risks after deployment.

Module 12: Cryptographic Governance and Corporate Readiness

  • Establishing cryptographic governance frameworks.
  • Defining security responsibilities and ownership.
  • Cryptographic policies and implementation standards.
  • Key management governance.
  • Compliance and audit considerations.
  • Risk-based cryptographic decision-making.
  • Security architecture governance.
  • Technology lifecycle management.
  • Measuring post-quantum readiness.
  • Developing an actionable organisational cryptographic resilience strategy.

Module 13: Practical Post-Quantum Security Planning

  • Reviewing enterprise cryptographic environments.
  • Identifying systems requiring migration.
  • Mapping existing cryptographic mechanisms.
  • Evaluating Kyber and Dilithium implementation requirements.
  • Assessing lattice-based cryptography applications.
  • Reviewing elliptic curve dependencies.
  • Establishing migration priorities.
  • Developing implementation and testing requirements.
  • Defining governance and monitoring controls.
  • Creating a practical post-quantum readiness roadmap.

Module 14: Strategic Cryptographic Resilience

  • Building long-term cryptographic resilience.
  • Preparing organisations for evolving cybersecurity threats.
  • Maintaining cryptographic agility.
  • Managing technological change without compromising security.
  • Integrating post-quantum security into enterprise architecture.
  • Supporting secure digital transformation.
  • Strengthening security investment planning.
  • Establishing sustainable cryptographic governance.
  • Monitoring developments in post-quantum standards.
  • Creating continuous improvement mechanisms for cryptographic security.

FAQs

1. What are Modern and Post-Quantum Cryptography Implementation Training Courses?

These courses provide a corporate-focused approach to modern cryptography and the implementation of post-quantum security mechanisms. They cover cryptographic risk, lattice-based cryptography, Kyber, Dilithium, key encapsulation, NIST standardisation, elliptic curve cryptography, migration planning, and enterprise cryptographic governance.

2. Why is post-quantum cryptography important for organisations?

Post-quantum cryptography helps organisations prepare for future security risks associated with quantum computing. Organisations with long-lived sensitive information and extensive public-key cryptographic dependencies can use post-quantum planning to assess exposure and develop structured migration strategies.

3. Does the course cover Kyber and Dilithium?

Yes. The programme examines Kyber as a key encapsulation mechanism and Dilithium as a post-quantum digital signature mechanism, including their corporate implementation considerations, security roles, integration requirements, and migration implications.

4. Does the programme cover existing cryptographic technologies?

Yes. The course addresses modern cryptography and established technologies such as elliptic curve cryptography. It examines how organisations can assess existing cryptographic dependencies and plan transitions towards post-quantum mechanisms while maintaining operational security and interoperability.

5. Who provides the Modern and Post-Quantum Cryptography Implementation Training Courses?

The programme is provided by The British Academy for Training and Development under the Cybersecurity and Digital Security category. It is designed around corporate cybersecurity, cryptographic governance, implementation, risk management, and post-quantum readiness.

Course Date

2026-10-05

2027-01-04

2027-04-05

2027-07-05

Course Cost

Note / Price varies according to the selected city

Members NO. : 1
£4600 / Member

Members NO. : 2 - 3
£3680 / Member

Members NO. : + 3
£2852 / Member

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