Toward Super Temporal Resolution by Suppression of Mixing Effects of Electrons

Author:

Ngo Nguyen Hoai1ORCID,Etoh Takeharu Goji2ORCID,Shimonomura Kazuhiro1ORCID,Ando Taeko1,Matsunaga Yoshiyuki1,Shimura Takayoshi2ORCID,Watanabe Heiji1ORCID,Mutoh Hideki3ORCID,Kamakura Yoshinari4,Charbon Edoardo5ORCID

Affiliation:

1. School of Science and Engineering of Ritsumeikan University, Shiga, Japan

2. Graduate School of Engineering of Osaka University, Osaka, Japan

3. Link Research Corporation, Kanagawa, Japan

4. Faculty of Information Science and Technology, Osaka Institute of Technology, Hirakata Campus, Osaka, Japan

5. AQUA, School of Engineering, EPFL, Neuchâtel, Switzerland

Funder

Grant-in-Aids for Scientific Research, JSPS

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

Subject

Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials

Reference19 articles.

1. Ultrahigh speed imaging, from vacuum tube technology to solid state sensors, a state of the art (Conference Presentation)

2. Monolithic CMOS sensors for sub-nanosecond timing

3. Visualization of shocked material instabilities using a fast-framing camera and XFEL four-pulse train

4. A 3-tap global shutter 5.0 M pixel with background canceling for 165 MHz modulated pulsed indirect time-of-flight image sensor;tsutsui;ITE Tech Rep,2021

5. Toward super temporal resolution by controlling horizontal motions of electrons;etoh;Proc Int Image Sensor Workshop (IISW),2021

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