Alexander Hoover 0001

dblp:132/4924-1 · DBLP profile ↗
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7ranked-venue papers
2as first author
4since 2021 · last 2025
0009-0003-9818-1419ORCID · conflict

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 5 · 2 first-author · 4 since 2021Artificial intelligence and machine learning · 1Systems, architecture and hardware · 1Graphics, computer vision, multimedia, augmented reality and games · 1Theory of computation · 1
YearPublicationVenuePosition
2025 Plinko: Single-Server PIR with Efficient Updates via Invertible PRFs
Alexander Hoover 0001, Sarvar Patel, Giuseppe Persiano, Kevin Yeo
EUROCRYPT (6)1
2025 Watermarking Language Models for Many Adaptive Users
abstract
We study watermarking schemes for language models with provable guarantees. As we show, prior works offer no robustness guarantees against adaptive prompting: when a user queries a language model more than once, as even benign users do. And with just a single exception [1], prior works are restricted to zero-bit watermarking: machine-generated text can be detected as such, but no additional information can be extracted from the watermark. Unfortunately, merely detecting AI-generated text may not prevent future abuses. We introduce multi-user watermarks, which allow tracing model-generated text to individual users or to groups of colluding users, even in the face of adaptive prompting. We construct multi-user watermarking schemes from undetectable, adaptively robust, zero-bit watermarking schemes (and prove that the undetectable zero-bit scheme of [2] is adaptively robust). Importantly, our scheme provides both zero-bit and multi-user assurances at the same time. It detects shorter snippets just as well as the original scheme, and traces longer excerpts to individuals. The main technical component is a construction of message-embedding watermarks from zero-bit watermarks. Ours is the first generic reduction between watermarking schemes for language models. A challenge for such reductions is the lack of a unified abstraction for robustness - that marked text is detectable even after edits. We introduce a new unifying abstraction called AEB-robustness. AEB-robustness provides that the watermark is detectable whenever the edited text “approximates enough blocks” of model-generated output.
Aloni Cohen, Alexander Hoover 0001, Gabe Schoenbach
SP2
2024 LAMA: Leakage Abuse Attacks Against Microsoft Always Encrypted
Ryan Seah, Daren Khu, Alexander Hoover 0001, Ruth Ng
SECRYPT3
2024 Leakage-Abuse Attacks Against Structured Encryption for SQL
Alexander Hoover 0001, Ruth Ng, Daren Khu, Yao'an Li, Joelle Lim, Derrick Ng, Jed Lim, Yiyang Song
USENIX Security Symposium1
2020 Time-sliced quantum circuit partitioning for modular architectures
abstract
Current quantum computer designs will not scale. To scale beyond small prototypes, quantum architectures will likely adopt a modular approach with clusters of tightly connected quantum bits and sparser connections between clusters. We exploit this clustering and the statically-known control flow of quantum programs to create tractable partitioning heuristics which map quantum circuits to modular physical machines one time slice at a time. Specifically, we create optimized mappings for each time slice, accounting for the cost to move data from the previous time slice and using a tunable lookahead scheme to reduce the cost to move to future time slices. We compare our approach to a traditional statically-mapped, owner-computes model. Our results show strict improvement over the static mapping baseline. We reduce the non-local communication overhead by 89.8% in the best case and by 60.9% on average. Our techniques, unlike many exact solver methods, are computationally tractable.
Jonathan M. Baker, Casey Duckering, Alexander Hoover 0001, Fred Chong
CF3
2020 A Lower Bound for One-Round Oblivious RAM
David Cash, Andrew Drucker, Alexander Hoover 0001
TCC (1)3
2019 Very Hard Electoral Control Problems
Zack Fitzsimmons, Edith Hemaspaandra, Alexander Hoover 0001, David E. Narváez
AAAI3