Media Summary: Winter School on Secure Computation and Efficiency. Session 7: Prof. Yehuda Lindell of Bar-Ilan University Lecture given at Technion-Israel Institute of Technology TCE Summer School 2013 ... Chris Schaffner (University of Amsterdam & QuSoft) The Quantum Wave in

Two Party Secure Computation For - Detailed Analysis & Overview

Winter School on Secure Computation and Efficiency. Session 7: Prof. Yehuda Lindell of Bar-Ilan University Lecture given at Technion-Israel Institute of Technology TCE Summer School 2013 ... Chris Schaffner (University of Amsterdam & QuSoft) The Quantum Wave in An overview of Chapter 12 of our textbook (with Himanshu Tyagi) on "Information-theoretic Cryptography." Publisher site: ... Yehuda Lindel, Bar-Ilan University, "Highly Efficient Carmit Hazay and Muthuramakrishnan Venkitasubramaniam, Crypto 2016.

The millionaires problem, 2-party functionalities, Thomas Schneider, Technische Universität Darmstadt Securing

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Two-Party Secure Computation for Malicious Adversaries
Invited Talk: Efficient Two-Party Secure Computation for Semi-Honest and Malicious Adversaries
Secure Two-Party Computation in Practice Part 1 - Yehuda Lindell
Secure Multi-party Quantum Computation with a Dishonest Majority
USENIX Security '16 - Faster Malicious 2-Party Secure Computation with Online/Offline Dual Execution
The Concrete Security of Two-Party Computation: Simple Definitions, and Tight Proofs for PSI and...
Two-party Secure Computation for Passive Adversary (Part I)
Yehuda Lindel:Highly Efficient Secure Two-Party Computation - the Road from Theory to Practice
Two-round Secure Multiparty Computations from Minimal Assumptions
On the Power of Secure Two Party Computation
Two-party secure computation
A Framework for Efficient Mixed-Protocol Secure Two-Party Computation
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Two-Party Secure Computation for Malicious Adversaries

Two-Party Secure Computation for Malicious Adversaries

Winter School on Secure Computation and Efficiency. Session 7:

Invited Talk: Efficient Two-Party Secure Computation for Semi-Honest and Malicious Adversaries

Invited Talk: Efficient Two-Party Secure Computation for Semi-Honest and Malicious Adversaries

Invited Talk: Efficient

Secure Two-Party Computation in Practice Part 1 - Yehuda Lindell

Secure Two-Party Computation in Practice Part 1 - Yehuda Lindell

Prof. Yehuda Lindell of Bar-Ilan University Lecture given at Technion-Israel Institute of Technology TCE Summer School 2013 ...

Secure Multi-party Quantum Computation with a Dishonest Majority

Secure Multi-party Quantum Computation with a Dishonest Majority

Chris Schaffner (University of Amsterdam & QuSoft) The Quantum Wave in

USENIX Security '16 - Faster Malicious 2-Party Secure Computation with Online/Offline Dual Execution

USENIX Security '16 - Faster Malicious 2-Party Secure Computation with Online/Offline Dual Execution

Faster Malicious

The Concrete Security of Two-Party Computation: Simple Definitions, and Tight Proofs for PSI and...

The Concrete Security of Two-Party Computation: Simple Definitions, and Tight Proofs for PSI and...

Mihir Bellare (UCSD) https://simons.berkeley.edu/talks/mihir-bellare-ucsd-2025-08-06

Two-party Secure Computation for Passive Adversary (Part I)

Two-party Secure Computation for Passive Adversary (Part I)

An overview of Chapter 12 of our textbook (with Himanshu Tyagi) on "Information-theoretic Cryptography." Publisher site: ...

Yehuda Lindel:Highly Efficient Secure Two-Party Computation - the Road from Theory to Practice

Yehuda Lindel:Highly Efficient Secure Two-Party Computation - the Road from Theory to Practice

Yehuda Lindel, Bar-Ilan University, "Highly Efficient

Two-round Secure Multiparty Computations from Minimal Assumptions

Two-round Secure Multiparty Computations from Minimal Assumptions

A

On the Power of Secure Two Party Computation

On the Power of Secure Two Party Computation

Carmit Hazay and Muthuramakrishnan Venkitasubramaniam, Crypto 2016.

Two-party secure computation

Two-party secure computation

The millionaires problem, 2-party functionalities,

A Framework for Efficient Mixed-Protocol Secure Two-Party Computation

A Framework for Efficient Mixed-Protocol Secure Two-Party Computation

Thomas Schneider, Technische Universität Darmstadt Securing

USENIX Security '21 - ABY2.0: Improved Mixed-Protocol Secure Two-Party Computation

USENIX Security '21 - ABY2.0: Improved Mixed-Protocol Secure Two-Party Computation

USENIX