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Lysyanskaya, Anna - Department of Computer Science, Brown University
Compact E-Cash Jan Camenisch1
Dynamic Accumulators and Application to Efficient Revocation of Anonymous Credentials
Dynamic Accumulators and Application to Efficient Revocation of Anonymous Credentials
Signature Schemes and Anonymous Credentials from Bilinear Maps Jan Camenisch
Multicast Authentication Fully Adversarial Networks Anna Lysyanskaya Roberto Tamassia Nikos Triandopoulos
Mercurial Commitments with Applications to Zero-Knowledge Sets
How To Use Untrusted Cryptographic Software Susan Hohenberger 1;? and Anna Lysyanskaya 2;??
Dynamic Accumulators and Application to Efficient Revocation of Anonymous Credentials
Making P2P Accountable without Losing Privacy Mira Belenkiy, Melissa Chase, C. Chris Erway, John Jannotti,
Endorsed E-Cash Jan Camenisch
How to Win the Clone Wars: Efficient Periodic n-Times Anonymous Authentication
On Signatures of Knowledge Melissa Chase and Anna Lysyanskaya
Rationality and Adversarial Behavior in Multi-Party Computation
Provably Secure Steganography with Imperfect Anna Lysyanskaya and Mira Meyerovich
A Formal Treatment of Onion Routing Jan Camenisch and Anna Lysyanskaya
Mercurial Commitments with Applications to Zero-Knowledge Sets Melissa Chase
Multicast Authentication in Fully Adversarial Networks Anna Lysyanskaya Roberto Tamassia Nikos Triandopoulos
Sequential Aggregate Signatures from Trapdoor Permutations Anna Lysyanskaya
Algorithmic Tamper-Proof (ATP) Security: Theoretical Foundations for Security Against
Rationality and Adversarial Behavior in MultiParty Computation
Balancing Accountability and Privacy Using ECash (Extended Abstract)
Sequential Aggregate Signatures from Trapdoor Permutations Anna Lysyanskaya
Signature Schemes and Anonymous Credentials from Bilinear Maps Jan Camenisch
How to Win the Clone Wars: Efficient Periodic nTimes Anonymous Authentication
Algorithmic TamperProof (ATP) Security: Theoretical Foundations for Security Against
A Formal Treatment of Onion Routing Jan Camenisch
Group Blind Digital Signatures: A Scalable Solution to Electronic Cash