Innovation, Quantum-AI Technology & Law

Blog over Kunstmatige Intelligentie, Quantum, Deep Learning, Blockchain en Big Data Law

Blog over juridische, sociale, ethische en policy aspecten van Kunstmatige Intelligentie, Quantum Computing, Sensing & Communication, Augmented Reality en Robotica, Big Data Wetgeving en Machine Learning Regelgeving. Kennisartikelen inzake de EU AI Act, de Data Governance Act, cloud computing, algoritmes, privacy, virtual reality, blockchain, robotlaw, smart contracts, informatierecht, ICT contracten, online platforms, apps en tools. Europese regels, auteursrecht, chipsrecht, databankrechten en juridische diensten AI recht.

Berichten met de tag entanglement
Quantum Superposition, Entanglement, and Tunneling Explained for Law and Policy

Every debate about quantum law eventually runs into three words of physics: superposition, entanglement, and tunneling. Together they explain why quantum computing will break today's public-key encryption, why properly implemented quantum communication can reveal interception through its error statistics, and why quantum sensors raise privacy questions long before large quantum computers exist. This explainer unpacks all three for a legal and policy audience, accurately and without the folklore.

Which recent experiments turned quantum theory into engineering fact

The physics is a century old, and the decisive experiments are recent. A 16-microgram sapphire crystal has been placed in a superposition of two vibration states at once, the heaviest "Schrödinger cat" prepared to date. Loophole-free Bell tests in 2015 observed correlations between entangled particles that no local hidden-variable model can reproduce, work crowned by the 2022 Nobel Prize in Physics. And in 2020, physicists first clocked how long ultracold atoms spend inside a barrier while tunneling through it: about 0.6 milliseconds, for a passage classical physics forbids outright. Quantum mechanics is now an engineering substrate, and the engineering keeps pushing the quantum-classical boundary outward year by year.

What each phenomenon means for encryption, networks, and sensing law

Each phenomenon carries its own governance consequence. Superposition, interference, and phase estimation together make Shor's algorithm work, and with it the harvest-now-decrypt-later threat: encrypted data copied today can be unlocked by a future quantum machine, which is why cryptographic migration deadlines exist now. Entanglement is the resource behind quantum networks and entanglement-based key distribution, and a future quantum internet whose infrastructure crosses borders will raise jurisdiction and interception questions. Tunneling sits inside the hardware itself, from flash memory to the Josephson junctions of superconducting processors, and inside a generation of quantum sensors with real dual-use potential. The stakes of getting this wrong were spelled out bluntly in Foreign Policy's warning about quantum computing.

Why lawmakers still have lead time on quantum technology

The essay's core claim is simple: these phenomena are the policy argument. Where AI governance had to be retrofitted onto deployed systems, quantum technology still offers lawmakers lead time. The full analysis walks through each phenomenon with the recent experimental evidence in hand, then lands the legal consequence: superposition sets the cryptographic migration clock, entanglement sets the network and jurisdiction agenda, and tunneling sets the hardware and sensing agenda. Read on to see how policymakers can use that lead time on cryptographic migration, network governance, hardware controls, and sensing risks.

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Establishing a Legal-Ethical Framework for Quantum Technology

Yale Law School, Yale Journal of Law & Technology (YJoLT) The Record 2021

New peer reviewed cross-disciplinary Stanford University Quantum & Law research article: “Establishing a Legal-Ethical Framework for Quantum Technology”.

By Mauritz Kop

Citation: Kop, Mauritz, Establishing a Legal-Ethical Framework for Quantum Technology (March 2, 2021). Yale J.L. & Tech. The Record 2021, https://yjolt.org/blog/establishing-legal-ethical-framework-quantum-technology

Download the article here: Kop_Legal-Ethical Framework for Quantum Tech-Yale

Please find a short abstract below:

What is quantum technology?

Quantum technology is founded on general principles of quantum mechanics and combines the counterintuitive physics of the very small with engineering. Particles and energy at the smallest scale do not follow the same rules as the objects we can detect around us in our everyday lives. The general principles, or properties, of quantum mechanics are superposition, entanglement, and tunnelling. Quantum mechanics aims to clarify the relationship between matter and energy, and it describes the building blocks of atoms at the subatomic level.

Raising Quantum Awareness

Quantum technologies are rapidly evolving from hypothetical ideas to commercial realities. As the world prepares for these tangible applications, the quantum community issued an urgent call for action to design solutions that can balance their transformational impact. An important first step to encourage the debate is raising quantum awareness. We have to put controls in place that address identified risks and incentivise sustainable innovation.

Connecting AI and Nanotechnology to Quantum

Establishing a culturally sensitive legal-ethical framework for applied quantum technologies can help to accomplish these goals. This framework can be built on existing rules and requirements for AI. We can enrich this framework further by integrating ethical, legal and social issues (ELSI) associated with nanotechnology. In addition, the unique physical characteristics of quantum mechanics demand universal guiding principles of responsible, human-centered quantum technology. To this end, the article proposes ten guiding principles for the development and application of quantum technology.

Risk-based Quantum Technology Impact Assessment Tools

Lastly, how can we monitor and validate that real world quantum tech-driven implementations remain legal, ethical, social and technically robust during their life cycle? Developing concrete tools that address these challenges might be the answer. Raising quantum awareness can be accomplished by discussing a legal-ethical framework and by utilizing risk-based technology impact assessment tools in the form of best practices and moral guides.

Mauritz Kop is a Stanford Law School TTLF Fellow, Founder of MusicaJuridica and strategic intellectual property lawyer at AIRecht, a leading 4th Industrial Revolution technology consultancy firm based in Amsterdam, The Netherlands. The author is grateful to Mark Brongersma (Department of Materials Science and Engineering at Stanford University), Mark Lemley (Stanford Law School), and Suzan Slijpen (Slijpen Legal) for valuable cross-disciplinary comments on an earlier version of this article. Thank you Ben Rashkovich and the Yale Journal of Law & Technology for excellent suggestions and editorial support. This article benefitted from comments at the World Economic Forum Quantum Computing Ethics Workshop.

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