126. “A silicon-on-thin-buried-oxide CMOS microcontroller with embedded atomswitch ROM”
T. Sakamoto, Y. Tsuji, M. Tada, H. Makiyama, T. Hasegawa,
Y. Yamamoto, S. Okanishi, K. Maekawa, N. Banno, M. Miyamura,
K. Okamoto, N. Iguchi, H. Oda, S. Kamohara, Y. Yamagata, N. Sugii,
H. Hada, and Y. Ogasahara
IEEE Micro 35 (2015) 13–23.
DOI: 10.1109/MM.2015.142
127. “Effect of ionic conductivity on response speed of SrTiO 3 -based all-solid-state
electric-double-layer transistor”
T. Tsuchiya, M. Ochi, T. Higuchi, K. Terabe, and M. Aono
ACS Applied Materials & Interfaces 7 (2015) 12254–12260.
DOI: 10.1021/acsami.5b02998
128. “In situ and non-volatile photoluminescence tuning and nanodomain writing
demonstrated by all-solid-state devices based on graphene oxide”
T. Tsuchiya, T. Tsuruoka, K. Terabe, and M. Aono
ACS Nano 9 (2015) 2102–2110.
DOI: 10.1021/nn507363g
129. “Atomic switch networks—nanoarchitectonic design of a complex system of
natural computing”
E. C. Demis, R. Aguilera, H. O. Sillin, K. Scharnhorst, E. J. Sandouk,
M. Aono, A. Z. Stieg, and J. K. Gimzewski
Nanotechnology 26 (2015) 204003.
DOI: 10.1088/0957-4484/26/204003
130. “Resistive switching in a few nanometers thick tantalum oxide film formed by
a metal oxidation”
T. Ohno and S. Samukawa
Applied Physics Letters 106 (2015) 173110.
DOI: 10.1063/1.4919724
2016
131. “Mechanism for conducting filament growth in self-assembled polymer thin
films for redox-based atomic switches”
K. Krishnan, T. Tsuruoka, C. Mannequin, and M. Aono
Advanced Materials 28 (2016) 640–648.
DOI: 10.1002/adma.201504202
132. “Direct observation of anodic dissolution and filament growth behavior in
polyethylene-oxide-based atomic switch structures”
K. Krishnan, T. Tsuruoka, and M. Aono
Japanese Journal of Applied Physics 55 (2016) 06GK02.
DOI: 10.7567/JJAP.55.06GK02
133. “Humidity effects on the redox reactions and ionic transport in a Cu/Ta 2 O 5 /Pt
atomic switch structure”
T. Tsuruoka, I. Valov, C. Mannequin, T. Hasegawa, R. Waser, and
M. Aono
A List of Papers Related to the Atomic Switch
261
T. Sakamoto, Y. Tsuji, M. Tada, H. Makiyama, T. Hasegawa,
Y. Yamamoto, S. Okanishi, K. Maekawa, N. Banno, M. Miyamura,
K. Okamoto, N. Iguchi, H. Oda, S. Kamohara, Y. Yamagata, N. Sugii,
H. Hada, and Y. Ogasahara
IEEE Micro 35 (2015) 13–23.
DOI: 10.1109/MM.2015.142
127. “Effect of ionic conductivity on response speed of SrTiO 3 -based all-solid-state
electric-double-layer transistor”
T. Tsuchiya, M. Ochi, T. Higuchi, K. Terabe, and M. Aono
ACS Applied Materials & Interfaces 7 (2015) 12254–12260.
DOI: 10.1021/acsami.5b02998
128. “In situ and non-volatile photoluminescence tuning and nanodomain writing
demonstrated by all-solid-state devices based on graphene oxide”
T. Tsuchiya, T. Tsuruoka, K. Terabe, and M. Aono
ACS Nano 9 (2015) 2102–2110.
DOI: 10.1021/nn507363g
129. “Atomic switch networks—nanoarchitectonic design of a complex system of
natural computing”
E. C. Demis, R. Aguilera, H. O. Sillin, K. Scharnhorst, E. J. Sandouk,
M. Aono, A. Z. Stieg, and J. K. Gimzewski
Nanotechnology 26 (2015) 204003.
DOI: 10.1088/0957-4484/26/204003
130. “Resistive switching in a few nanometers thick tantalum oxide film formed by
a metal oxidation”
T. Ohno and S. Samukawa
Applied Physics Letters 106 (2015) 173110.
DOI: 10.1063/1.4919724
2016
131. “Mechanism for conducting filament growth in self-assembled polymer thin
films for redox-based atomic switches”
K. Krishnan, T. Tsuruoka, C. Mannequin, and M. Aono
Advanced Materials 28 (2016) 640–648.
DOI: 10.1002/adma.201504202
132. “Direct observation of anodic dissolution and filament growth behavior in
polyethylene-oxide-based atomic switch structures”
K. Krishnan, T. Tsuruoka, and M. Aono
Japanese Journal of Applied Physics 55 (2016) 06GK02.
DOI: 10.7567/JJAP.55.06GK02
133. “Humidity effects on the redox reactions and ionic transport in a Cu/Ta 2 O 5 /Pt
atomic switch structure”
T. Tsuruoka, I. Valov, C. Mannequin, T. Hasegawa, R. Waser, and
M. Aono
A List of Papers Related to the Atomic Switch
261
