Thermally Stable and Radiation‐Proof Visible‐Light Photodetectors Made from N‐Doped Diamond

Author:

Sittimart Phongsaphak12ORCID,Ohmagari Shinya13,Umezawa Hitoshi3,Kato Hiromitsu3,Ishiji Kotaro4,Yoshitake Tsuyoshi2

Affiliation:

1. Sensing System Research Center National Institute of Advanced Industrial Science and Technology (AIST) 807‐1 Shuku‐machi Tosu Saga 841‐0052 Japan

2. Department of Advanced Energy Science and Engineering Kyushu University 6‐1 Kasuga‐koen Kasuga Fukuoka 816–8580 Japan

3. Advanced Power Electronics Research Center National Institute of Advanced Industrial Science and Technology (AIST) 1‐8‐31 Midorigaoka Ikeda Osaka 563–8577 Japan

4. Beamline Group Kyushu Synchrotron Light Research Center 8‐7 Yayoigaoka Tosu Saga 841‐0005 Japan

Abstract

AbstractDue to the limits of the physical properties of conventional semiconductors against harsh environments, seeking a suitable material for next‐generation photoconversion devices with high‐temperature stability and strong radiation hardness has become a hot issue. Here, visible‐light photodetectors are fabricated on an N‐doped diamond. Their visible‐light detection via charge‐neutralized impurity levels including multi‐complex mid‐gap states induced crystal defects shows photosensitivity of at least four orders (104), the visible responsivity of 0.08 A W−1, and the detectivity of 3.9 × 1012 Jones. No significant deterioration of such figures of merit of photodetectors is observed even at an environmental temperature of 250 °C and after absorption to 10 MGy in the dose of white X‐ray. N‐doped diamond shows excellent potential to be applicable to visible‐light photodetectors for harsh‐environmental implementations, which conventional visible‐light photodetectors are not capable of so far.

Funder

Japan Society for the Promotion of Science

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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