Vertical Memristive Crossbar Array for Multilayer Graph Embedding and Analysis

J Janguk Han Y Yoon Ho Jang J Ji Won Moon (Department of Materials Science and Engineering and Inter‐university Semiconductor Research Center, College of Engineering Seoul National University Seoul 08826 Republic of Korea) S Sung Keun Shim S Sunwoo Cheong S Soo Hyung Lee T Tae Won Park (Department of Materials Science and Engineering and Inter‐University Semiconductor Research Center Seoul National University Seoul 08826 South Korea) J Joon‐Kyu Han (Department of Materials Science and Engineering and Inter‐University Semiconductor Research Center Seoul National University Seoul Republic of Korea) C Cheol Seong Hwang

Abstract

AbstractGraph data structures effectively represent objects and their relationships, enabling the modeling of complex connections in various fields. Recent work demonstrate that metal at diagonal crossbar arrays (m‐CBA) can effectively represent planar graphs. However, they are unsuitable for representing multilayer graphs having multiple relationships across different layers. Using conventional software, embedding multilayer graphs in high‐dimensional Euclidean spaces introduces significant mathematical complexity and computational burden, often resulting in information loss. This study proposes a unique graph embedding (mapping) method utilizing a fabricated vertical m‐CBA (vm‐CBA), where a custom‐built measurement system thoroughly validated its functionality. This structure directly maps multilayer graphs into a 3D vm‐CBA, accurately representing inter‐layer and intra‐layer connections. The practical link prediction and information scores across various real‐world datasets demonstrated that vm‐CBA achieved enhanced accuracy compared to conventional embeddings, even with a significantly decreased number of operations.

Article Details

Volume / Issue Vol. 37, Issue 10
Published March 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (9)

J

Janguk Han

Y

Yoon Ho Jang

J

Ji Won Moon

Department of Materials Science and Engineering and Inter‐university Semiconductor Research Center, College of Engineering Seoul National University Seoul 08826 Republic of Korea

S

Sung Keun Shim

S

Sunwoo Cheong

S

Soo Hyung Lee

T

Tae Won Park

Department of Materials Science and Engineering and Inter‐University Semiconductor Research Center Seoul National University Seoul 08826 South Korea

J

Joon‐Kyu Han

Department of Materials Science and Engineering and Inter‐University Semiconductor Research Center Seoul National University Seoul Republic of Korea

C

Cheol Seong Hwang