Paragraphs

OVERVIEW
 

The global demand for “AI sovereignty” is increasingly shaping AI policy and safety discussions. What was once a niche concern has become a widely shared priority, with more countries seeking control over how AI is built, deployed, and governed within their borders. This memo synthesizes key insights on the drivers of AI sovereignty, how countries are operationalizing it in practice, and the implications for U.S. diffusion strategy and managing global risks.

Three premises frame the analysis. First, emerging economies and middle powers are becoming crucial partners, consumers, and suppliers in the global AI ecosystem. Second, U.S. leadership in frontier AI creates a narrow—and likely diminishing—window to shape how this technology diffuses. Third, understanding what countries actually want from AI is critical to designing a sustainable U.S. diffusion strategy and navigating shared risks.

These insights draw on ongoing research from the Carnegie Endowment for International Peace (CEIP) and Stanford's Program on Geopolitics, Technology, and Governance (GTG), and were further developed at a workshop, “AI Sovereignty, Diffusion, and Risk: Strategy in a Contested Landscape,” convened by CEIP and GTG on June 17, 2026 with experts from civil society, industry, and academia.
 

KEY INSIGHTS
 

“AI sovereignty” is a politically potent but analytically ambiguous concept, driven primarily by a desire to manage dependence and extractivism, and to obtain AI suited to local contexts.
 

While the term “AI sovereignty” is ambiguous, it has become an increasingly influential part of international AI discussions. Sovereignty goals seem less about achieving true technological autarky (widely seen as unfeasible), and more about a desire to secure national interests (economic, security, cultural) within a tech landscape dominated by the U.S. and China. In this way, AI sovereignty might be practically understood better as “AI agency:” a country's ability to execute choices in line with national interests. In search of this agency, countries will likely pursue a strategy that combines assured access arrangements for foreign AI models and hardware with efforts to diversify and build domestic capacity (indigenous or modified foreign open-source) if such access is disrupted. These domestic capacity efforts tend to focus on cheaper, multilingual, and multimodal models contextually attuned to underserved markets.

Sovereignty can serve as a source of resilience, and, increasingly, may serve as a deterrent against being cut off from frontier AI capabilities. To achieve this deterrent effect, countries are likely to seek sources of leverage along the AI value chain. These may include:

  • Control over scarce resources in the AI supply chain, such as critical minerals or low-cost energy for powering data centers.
  • Significant market power that makes a country an indispensable consumer of AI services.
  • Refining high-value local data for domestic value capture.
     

These sources of leverage, however, could be a depreciating asset, as a nation may only be able to threaten or use its leverage once before providers diversify away from it.

Perceptions of AI risk within sovereignty debates rarely focus on concerns over shared catastrophic and large-scale threats.
 

Discussions of AI sovereignty in many middle powers and emerging economies are primarily driven by concerns over dependency, extractivism, market concentration, and geopolitical subordination. Cross-border, large-scale AI risks like cyberattacks, biosecurity, or rogue AI agents have not been central to these debates to date, as they are often perceived as remote or lower priority than immediate economic and political concerns and assured access to AI technology.

Recent events, such as the U.S. government blocking Anthropic's Fable model access, have reinforced this focus on dependency. While the incident highlighted the potential for dangerous capabilities, the primary international reaction has been concerned with the U.S. wielding a “kill switch” over model deployment, reinforcing fears of unilateral control and strengthening the case for AI sovereignty.

This dynamic could shift as AI capabilities diffuse. The widespread availability of powerful models capable of causing significant cross-border harm, such as cybersecurity failures in critical infrastructure, may force a re-evaluation. In such a scenario, the salience of shared safety and security could rise, potentially aligning national interests more closely with global risk mitigation efforts.

Countries are actively pursuing sovereign AI projects, but a significant gap persists between ambitious strategies and operational capacity.
 

A clear trend of sovereign-related AI projects and announcements is underway globally, especially in the EU, Indo-Pacific, and Gulf States. These initiatives range from building national compute clusters and developing domestic models to pursuing legal arrangements to ensure data localization and provide assured access to foreign AI models.

However, a significant gap often exists between high-level ambitions and the operational capacity to implement them, as many efforts lack clear funding and technical expertise.

The viability of these national ambitions may hinge on a critical, and often unresolved, distinction: identifying which use cases can use “good enough” AI, relying on less advanced models and infrastructure, versus those that require access to the frontier.

The future trajectory of AI—whether dominated by a few frontier labs or a broader open-source ecosystem—is a central uncertainty shaping national strategies.
 

A fundamental tension exists between two potential AI futures: one where a handful of frontier labs create a runaway capability gap, and another where open-source models remain competitive and useful for most purposes.

In a world where frontier models pull away, a U.S.-led stack could become central to the global economy and international security, giving the U.S. unprecedented insight and international leverage.

In contrast, in a world where open-source and fast follower models remain competitive, the strategic calculus shifts, potentially lowering the stakes of frontier competition for many countries and enabling more diversified technology ecosystems.

The concept of an organized “third stack” as an alternative to U.S. and Chinese ecosystems built on open-source models and diverse hardware is a potential pathway for middle powers seeking to avoid dependency. This alternative is only viable if a coalition of middle powers align on standards for procuring and deploying AI to pool their collective purchasing power; the European Union’s regulatory and tech sovereignty efforts are informed by this logic. However, multi-state organization around a third stack faces significant collective action problems, and any effort to create an independent stack could be viewed as a challenge to U.S. national security, incentivizing Washington to pursue bilateral engagements that thwart an emergent alternative.

Even with open models, countries may still want assured access to frontier AI for limited, exquisite capabilities.
 

Even if many countries' economic, development, and security goals can be achieved through “good enough” AI, countries may want access to high-end capabilities for specific purposes. This could give the United States an opportunity to offer assured access to frontier AI in exchange for safety and security commitments.

However, an assured access framework faces major challenges:

  • Trust in U.S. assurances: The U.S. is often not currently seen as a credible, long-term partner. Without trust, assurances are secondary to mutual leverage.
  • Third country leverage: A security–frontier bargain appears most viable with countries that possess something the U.S. wants (e.g., India's data, Brazil's energy resources). Leverage is unclear for states that lack such bargaining chips.
  • Risk perception gap: Safety commitments, especially those framed around catastrophic risks, do not resonate strongly in many parts of the world, where developmental and economic priorities are paramount. For Global Majority economies, legible near-term AI risks include displacement of labor within domestic informal sectors and the devaluation of labor within global value chains.
     

Significant doubts about the U.S. government's ability to execute a nuanced AI partnership strategy highlight the roles of market forces and non-state actors.
 

Many believe the U.S. government currently lacks the capacity and planning to execute a complex global AI diffusion strategy. The U.S. government’s existing toolkit for promoting the U.S. tech stack, including bodies like the Development Finance Corporation (DFC) and EXIM Bank, is difficult to deploy effectively. The government's most effective role may be to de-risk investment and lend credibility in geopolitically critical areas where a natural market does not exist.

In the absence of a robust government strategy, market forces are the primary driver. The quality of U.S. technology creates a natural pull, but this may be counteracted by U.S. policy unpredictability.

In this vacuum, non-governmental actors are stepping in. Philanthropic organizations are brokering agreements between U.S. AI labs and Global Majority countries for specific use cases. However, it remains unclear if these ad-hoc efforts can scale into a coherent ecosystem that benefits U.S. interests.

PRIORITIES FOR FURTHER RESEARCH
 

This analysis surfaces several unresolved questions that warrant further research and debate. Priorities for future inquiry include:
 

  • Clarifying the competing futures of AI: Under what conditions might frontier AI models achieve a decisive, compounding advantage over open-source alternatives? What are the key technical and economic indicators that policymakers should monitor to assess which future is becoming more likely? What are the implications for AI risk management?
  • Mapping points of national leverage: Beyond theoretical control over chokepoints, what forms of economic, political, or geographic leverage have proven most effective for middle powers in securing favorable terms for AI access? How durable is this leverage, and can it be pooled regionally to overcome collective action problems?
  • Designing a viable U.S. partnership model: What specific, actionable policy tools are required for the U.S. to offer a compelling “assured access” bargain? How can such a policy be designed to be credible across administrations, especially for countries that lack significant intrinsic market or resource leverage? How should AI risks factor in?
  • Integrating safety into diffusion frameworks: How do perceptions of AI risk influence national sovereignty strategies? What practical mechanisms can embed safety and security commitments into technology partnerships?
     

Download the full PDF here.

All Publications button
0
Publication Type
Policy Briefs
Publication Date
Journal Publisher
GTG–CEIP
Authors
News Type
News
Date
Paragraphs

Even as artificial intelligence evolves at breakneck speed, advances in biotechnology and social media are also pressing society to quickly adapt, all while the world’s superpowers seek out a competitive technological advantage on the geopolitical stage.

The challenge of managing the interrelationship between these simultaneous developments was the focus of "World Changing Technology in 2026,” a panel discussion hosted by the Freeman Spogli Institute for International Studies (FSI) on May 5, 2026. 

The event was moderated by FSI director Colin Kahl, and featured FSI scholars with a cross-section of expertise: Drew Endy, FSI senior fellow (by courtesy) and associate professor in bioengineering at Stanford’s School of Engineering; Andrew Grotto, a research scholar at FSI’s Center for International Security and Cooperation (CISAC) and director of the Program on Geopolitics, Technology, and Governance (GTG); Jeff Hancock, senior fellow and director of FSI’s Tech Impact and Policy Center; and Jennifer Pan, FSI senior fellow and the Sir Robert Ho Tung Professor of Chinese Studies.

The scholars discussed four key areas to consider when it comes to the benefits, risks, and political implications of emerging technologies.

The Resurgence of Biotechnology

Humans have a long history with biotechnology, from fermentation to stem cell research. Now, after the past few decades in which industries were reshaped by digital technology, we’re seeing a potential biotech resurgence, explained Drew Endy, in which synthetic DNA chemistry allows scientists to build new DNA without using pre-existing molecules.

“I’m hopelessly biased,” said Endy. “But it's impossible for me to overstate the significance of being able to manufacture DNA from scratch.”

If the technology continues on its current trajectory, it could allow for a more accessible, affordable way to make useful items like computer chips or better enzymes, but it also carries the risk of offering a bad actor an easier path toward the creation of harmful toxins or pathogens.

Reflecting on the contrast between biotechnology and artificial intelligence, Colin Kahl observed, “We're reaching this moment where we're increasingly turning living organisms into zeros and ones, and we're turning zeros and ones into living organisms.”

We're reaching this moment where we're increasingly turning living organisms into zeros and ones, and we're turning zeros and ones into living organisms.
Colin Kahl
Director, Freeman Spogli Institute

Screens and Mental Health

Amid concerns about the amount of time children and teens are spending on screens and its impact on mental health, Australia recently passed the Social Media Minimum Age Act, which forbids social media companies to allow those under 16 from accessing their platforms.

According to Jeff Hancock, whose Tech Impact and Policy Center has been working alongside the Australian government to assess the ban’s effect, approximately 35% of young Australians have stopped using social media. But they’re not suddenly playing cricket with their friends. Many are simply swapping it out for ChatGPT or some other screen-based platform.

In California, legislation on a social media ban is being considered, which could influence other states. Issues involving social media and AI as they relate to children is one of today’s rare bipartisan issues.  

Of course, large language models can be persuasive and dangerous for adults, too. Hancock believes we should be “very concerned” about how AI will shape our perceptions of life, especially given the tendency of users to spend more time on social media when the algorithm feeds them negative content, and the economic incentives for platforms to keep users engaged.

The U.S.-China Decathalon

When it comes to the so-called AI “race” between the United States and China, Andrew Grotto prefers to compare it to a decathlon, since “AI competition is a multi-dimensional contest,” he explained. At the moment, both countries are vying to be the first to unlock artificial general intelligence (AGI), namely AI that matches or exceeds human intellectual capabilities.

When it comes to the adoption of America’s AI stack, “China is not only a formidable competitor on price, but increasingly quality,” Grotto stated. The U.S. is banking on other countries to view its values as an advantage. However, he said, we’re at a divisive moment in American foreign policy where it’s not a given that other countries will be keen to align with the U.S..

There are key differences between the U.S. and China in how they approach AI. While U.S. companies with massive market caps such as Google, Microsoft, and Amazon are focused mostly on serving wealthy countries with large populations, China is more willing to strategically invest in regions that don’t meet such criteria, like the Global South. It remains to be seen how the U.S. will address this gap, and how much it will attempt to reign in private businesses.

China does not share U.S. concerns on privacy and security risks. According to Jennifer Pan, the Chinese view on generative AI is “overwhelmingly positive. It's about the possibilities of this new technology in improving people's lives and the economy,” she said. Pan notes that “the goal of the Chinese Communist Party is to survive in power,” and so their regulations revolve mostly around political control.

Pan does note that, with the spread of digital technologies, propaganda has become more challenging for the Chinese Communist Party, as they now must compete with independent voices such as influencers for attention.  

The Bioweapons Risk

At the UN General Assembly in 2025, President Donald Trump called upon all nations to “end the development of bioweapons once and for all.”

Endy adds that nation states should also agree to a duty to notify each other in the event of an outbreak that could contribute to a pandemic. The risk of AI contributing to biological risk should not be taken lightly. Computational methods could potentially be used by bad actors to design novel toxins and pathogens that are undetectable and for which we don't have medical countermeasures or vaccines.

“People who wanted to cause harm in the past would see how difficult it is to utilize biology and be put off and pick up an automatic weapon instead,” Endy said. “But now if something like Claude makes it easier for them to use biotechnology, they could misuse biology.”

But Endy’s bigger concern is nation state bioweapons. The rhetoric around AI could be destabilizing, leading to one country deciding that if another country has a bioweapons program, they should follow suit.

“This is the historical pattern that played out 100 years ago that led to the militarization of biology leading into World War II,” Endy noted. “Nothing good came of that.”

Ideally, suggested Kahl, biology and AI would be used together for positive purposes, to create new vaccines and identify patient zeros earlier. Such positive uses of technology could help uplift humanity and propel us toward a brighter future.

What to Expect Next

“The World Changing Technology in 2026” panel discussion was the second event in FSI’s new quarterly series examining the state of the world. (Read a summary of the first event here.) The next discussion will take place in November 2026 and will examine the national and geopolitical ramifications of the U.S. mid-term elections. To join FSI at upcoming events on the latest developments in international affairs, register for invitations on the institute’s website.

Read More

Large audience at Encina Hall listens to a discussion about global trends and geopolitics in 2026 by scholars at the Freeman Spogli Institute.
News

How U.S. Competition with China is Shaping the Global Political Landscape

In the first of a new quarterly series of events, scholars from the Freeman Spogli Institute evaluated recent developments in world affairs, and offered an outlook for 2026.
How U.S. Competition with China is Shaping the Global Political Landscape
Hero Image
Colin Kahl, Director of the Freeman Spogli Institute for International Studies, on stage with panelists at the May 5 event, "World Changing Technology in 2026"
Rod Searcey
All News button
1
Subtitle

At a May panel discussion, experts from across the institute assessed biotechnology's resurgence, the mental health effects of social media, and growing concerns about AI-enabled bioweapons.

Image
AI
Title
Technology is Changing the World Before Our Eyes
Aria Label
Read Technology is Changing the World Before Our Eyes
Date Label
In Brief
  • Synthetic DNA manufacturing could enable affordable innovations but also risks making bioweapon development easier for bad actors.
  • Australia's social media ban shows young users shifting to ChatGPT, not outdoor activities, as California considers similar legislation.
  • China strategically invests in the Global South while U.S. companies focus on wealthy markets, creating a gap in AI adoption competition.
Display Hero Image Wide (1320px)
Yes
Subscribe to Global Technopolitics