Rolling the Dice with Light Competition: Introducing a True Random Number Generator Powered by Photo‐Induced Polarity Current

T Taehyun Park J Juhyung Seo (Department of Electronic Engineering Hanyang University Seoul Republic of Korea) N Namju Kim (Department of Chemistry) C Chaehyun Kim (Department of Semiconductor Engineering Gachon University Seongnam Gyeonggi‐do Republic of Korea) Y Yeong Jae Kim H Hyeonghun Kim (School of Chemical Engineering Chonnam National University Gwangju 61186 Republic of Korea) H Hyun Ho Kim S Seyong Oh D Dong Chan Kim (Department of Chemical and Biological Engineering Gachon University 1342 Seongnam‐Daero Seongnam Gyeonggi‐Do 13120 South Korea) D Donghee Son (Nanophotonics Research Center) J Jaehyun Hur (Department of Chemical and Biological Engineering Gachon University 1342 Seongnam‐Daero Seongnam Gyeonggi‐Do 13120 South Korea) Y Young‐Joon Kim (Department of Semiconductor Engineering Gachon University Seongnam Republic of Korea) B Byung Chul Jang (School of Electronic and Electrical Engineering Kyungpook National University Daegu Republic of Korea) H Hocheon Yoo

Abstract

AbstractThe pursuit of hardware‐based security solutions has highlighted the true random number generator (TRNG). Various physical phenomena, from noise generation to quantum physics complexities, have been explored for random number generation. The arc discharge light‐induced TRNG (ALTRNG) is introduced, featuring wavelength‐dependent photocurrent generation and arc discharge irradiation. A bipolar photo‐responsive photodetector (BPPD) differentiates “1” and “0” states, producing highly random bits validated by the National Institute of Standards and Technology (NIST) 15 tests. The BPPD's response to deep‐ultraviolet (DUV) and blue light enables distinct photocurrent generation under arc discharge illumination. The ALTRNG generates true random signals, yielding bit streams with unpredictability, uniform distribution, and stability. With a readout circuit achieving 2‐kbps, wireless random number transmission is demonstrated, highlighting potential for secure password systems and artificial X‐ray image generation.

Article Details

Volume / Issue Vol. 37, Issue 14
Published April 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (14)

T

Taehyun Park

J

Juhyung Seo

Department of Electronic Engineering Hanyang University Seoul Republic of Korea

N

Namju Kim

Department of Chemistry

C

Chaehyun Kim

Department of Semiconductor Engineering Gachon University Seongnam Gyeonggi‐do Republic of Korea

Y

Yeong Jae Kim

H

Hyeonghun Kim

School of Chemical Engineering Chonnam National University Gwangju 61186 Republic of Korea

H

Hyun Ho Kim

S

Seyong Oh

D

Dong Chan Kim

Department of Chemical and Biological Engineering Gachon University 1342 Seongnam‐Daero Seongnam Gyeonggi‐Do 13120 South Korea

D

Donghee Son

Nanophotonics Research Center

J

Jaehyun Hur

Department of Chemical and Biological Engineering Gachon University 1342 Seongnam‐Daero Seongnam Gyeonggi‐Do 13120 South Korea

Y

Young‐Joon Kim

Department of Semiconductor Engineering Gachon University Seongnam Republic of Korea

B

Byung Chul Jang

School of Electronic and Electrical Engineering Kyungpook National University Daegu Republic of Korea

H

Hocheon Yoo