| 2020 | CCS | Exploring Effect of Residual Electric Charges on Cryptographic Circuits. | Mitsuru Shiozaki, Takeshi Sugawara, Takeshi Fujino |
| 2020 | ISCAS | Cause Analysis Method of Entropy Loss in Physically Unclonable Functions. | Mitsuru Shiozaki, Yohei Hori, Tatsuya Oyama, Masayoshi Shirahata, Takeshi Fujino |
| 2020 | ISCAS | Model Reverse-Engineering Attack using Correlation Power Analysis against Systolic Array Based Neural Network Accelerator. | Kota Yoshida, Takaya Kubota, Shunsuke Okura, Mitsuru Shiozaki, Takeshi Fujino |
| 2019 | CCS | Simple Electromagnetic Analysis Attacks based on Geometric Leak on an ASIC Implementation of Ring-Oscillator PUF. | Mitsuru Shiozaki, Takeshi Fujino |
| 2019 | DSD | Deep Learning Side-Channel Attack Against Hardware Implementations of AES. | Takaya Kubota, Kota Yoshida, Mitsuru Shiozaki, Takeshi Fujino |
| 2019 | FCCM | Model-Extraction Attack Against FPGA-DNN Accelerator Utilizing Correlation Electromagnetic Analysis. | Kota Yoshida, Takaya Kubota, Mitsuru Shiozaki, Takeshi Fujino |
| 2015 | ISCAS | Tamper-resistant authentication system with side-channel attack resistant AES and PUF using MDR-ROM. | Mitsuru Shiozaki, Takaya Kubota, Tsunato Nakai, Akihiro Takeuchi, Takashi Nishimura, Takeshi Fujino |
| 2014 | CHES | Reversing Stealthy Dopant-Level Circuits. | Takeshi Sugawara, Daisuke Suzuki, Ryoichi Fujii, Shigeaki Tawa, Ryohei Hori, Mitsuru Shiozaki, Takeshi Fujino |
| 2014 | ISCAS | Side-channel attack resistant AES cryptographic circuits with ROM reducing address-dependent EM leaks. | Tsunato Nakai, Megumi Shibatani, Mitsuru Shiozaki, Takaya Kubota, Takeshi Fujino |
| 2013 | CHES | On Measurable Side-Channel Leaks Inside ASIC Design Primitives. | Takeshi Sugawara, Daisuke Suzuki, Minoru Saeki, Mitsuru Shiozaki, Takeshi Fujino |
| 2012 | DSD | Efficient DPA-Resistance Verification Method with Smaller Number of Power Traces on AES Cryptographic Circuit. | Hiroki Ito, Mitsuru Shiozaki, Anh-Tuan Hoang, Takeshi Fujino |
| 2011 | ISCAS | The arbiter-PUF with high uniqueness utilizing novel arbiter circuit with Delay-Time Measurement. | Kota Furuhashi, Mitsuru Shiozaki, Akitaka Fukushima, Takahiko Murayama, Takeshi Fujino |