Efficient Multiparty Protocols via Log-Depth

Efficient Multiparty Protocols via Log-Depth
1 / 1
Efficient Multiparty Protocols via Log-Depth - slide 1 of 35 Efficient Multiparty Protocols via Log-Depth - slide 2 of 35 Efficient Multiparty Protocols via Log-Depth - slide 3 of 35 Efficient Multiparty Protocols via Log-Depth - slide 4 of 35 Efficient Multiparty Protocols via Log-Depth - slide 5 of 35 Efficient Multiparty Protocols via Log-Depth - slide 6 of 35 Efficient Multiparty Protocols via Log-Depth - slide 7 of 35 Efficient Multiparty Protocols via Log-Depth - slide 8 of 35 Efficient Multiparty Protocols via Log-Depth - slide 9 of 35 Efficient Multiparty Protocols via Log-Depth - slide 10 of 35 Efficient Multiparty Protocols via Log-Depth - slide 11 of 35 Efficient Multiparty Protocols via Log-Depth - slide 12 of 35 Efficient Multiparty Protocols via Log-Depth - slide 13 of 35 Efficient Multiparty Protocols via Log-Depth - slide 14 of 35 Efficient Multiparty Protocols via Log-Depth - slide 15 of 35 Efficient Multiparty Protocols via Log-Depth - slide 16 of 35 Efficient Multiparty Protocols via Log-Depth - slide 17 of 35 Efficient Multiparty Protocols via Log-Depth - slide 18 of 35 Efficient Multiparty Protocols via Log-Depth - slide 19 of 35 Efficient Multiparty Protocols via Log-Depth - slide 20 of 35 Efficient Multiparty Protocols via Log-Depth - slide 21 of 35 Efficient Multiparty Protocols via Log-Depth - slide 22 of 35 Efficient Multiparty Protocols via Log-Depth - slide 23 of 35 Efficient Multiparty Protocols via Log-Depth - slide 24 of 35 Efficient Multiparty Protocols via Log-Depth - slide 25 of 35 Efficient Multiparty Protocols via Log-Depth - slide 26 of 35 Efficient Multiparty Protocols via Log-Depth - slide 27 of 35 Efficient Multiparty Protocols via Log-Depth - slide 28 of 35 Efficient Multiparty Protocols via Log-Depth - slide 29 of 35 Efficient Multiparty Protocols via Log-Depth - slide 30 of 35 Efficient Multiparty Protocols via Log-Depth - slide 31 of 35 Efficient Multiparty Protocols via Log-Depth - slide 32 of 35 Efficient Multiparty Protocols via Log-Depth - slide 33 of 35 Efficient Multiparty Protocols via Log-Depth - slide 34 of 35 Efficient Multiparty Protocols via Log-Depth - slide 35 of 35
Efficient Multiparty Protocols via Log-Depth Threshold Formulae Ron Rothblum Joint work with Gil Cohen, Ivan Damgard, Yuval Ishai, Jonas Kolker, Peter Miltersen and Ran Raz Secure Multiparty Computation (MPC)

Related Topics

Download this presentation From Below

"Efficient Multiparty Protocols via Log-Depth" is the property of its rightful owner. Permission is granted to download and print the materials on this website for personal, non-commercial use only, and to display it on your personal computer provided you do not modify the materials and that you retain all copyright notices contained in the materials. By downloading content from our website, you accept the terms of this agreement.

Presentation Transcript

01
Efficient Multiparty Protocols via Log-Depth Threshold Formulae Ron Rothblum

Joint work with Gil Cohen, Ivan Damgard, Yuval Ishai, Jonas Kolker, Peter Miltersen and Ran Raz<br>
02
Secure Multiparty Computation (MPC) [Yao86,Goldreich-Micali-Wigderson87]<br>
03
Feasibility Results: Perfect Security [BenOr-Goldwasser-Wigderson88,Chaum-Crepeau-Damgard88]<br>