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Physically Transient Memory on a Rapidly Dissoluble Paper for Security Application

  • Hagyoul Bae
  • , Byung Hyun Lee
  • , Dongil Lee
  • , Myeong Lok Seol
  • , Daewon Kim
  • , Jin Woo Han
  • , Choong Ki Kim
  • , Seung Bae Jeon
  • , Daechul Ahn
  • , Sang Jae Park
  • , Jun Young Park
  • , Yang Kyu Choi*
  • *Corresponding author for this work
  • Korea Advanced Institute of Science and Technology
  • NASA Ames Research Center

Research output: Contribution to journalJournal articlepeer-review

Abstract

We report the transient memory device by means of a water soluble SSG (solid sodium with glycerine) paper. This material has a hydroscopic property hence it can be soluble in water. In terms of physical security of memory devices, prompt abrogation of a memory device which stored a large number of data is crucial when it is stolen because all of things have identified information in the memory device. By utilizing the SSG paper as a substrate, we fabricated a disposable resistive random access memory (RRAM) which has good data retention of longer than 10 6 seconds and cycling endurance of 300 cycles. This memory device is dissolved within 10 seconds thus it can never be recovered or replicated. By employing direct printing but not lithography technology to aim low cost and disposable applications, the memory capacity tends to be limited less than kilo-bits. However, unlike high memory capacity demand for consumer electronics, the proposed device is targeting for security applications. With this regards, the sub-kilobit memory capacity should find the applications such as one-Time usable personal identification, authentication code storage, cryptography key, and smart delivery tag. This aspect is attractive for security and protection system against unauthorized accessibility.

Original languageEnglish
Article number38324
JournalScientific Reports
Volume6
DOIs
StatePublished - 2016.12.5

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