1990•Japanese Journal of Applied PhysicsRequires access

Micromachining and Device Transplantation Using Focused Ion Beam

Tohru Ishitani, Tsuyoshi Ohnishi, Yoshimi Kawanami

Open publisher page 36 citations

Abstract

During the past ten years, a number of focused ion beam (FIB) applications in microelectronics have been demonstrated and steadily identified. In this paper, we will review FIB micromachining and device transplantation, in which processes of FIB sputtering, redeposition, and/or FIB-assisted deposition are well utilized. The FIB 3-dimensional micromachining is demonstrated with the aid of a sample rotator. Good prospects in the device transplantation are identified as a new high-resolution method for microdevice assembly and device repair. These FIB applications can be visually performed using scanning ion microscope (SIM) images. Specifications of the FIB apparatus for these applications and FIB micromachining simulation are also discussed.

About this research paper

What this paper is about

During the past ten years, a number of focused ion beam (FIB) applications in microelectronics have been demonstrated and steadily identified. In this paper, we will review FIB micromachining and device transplantation, in which processes of FIB sputtering, redeposition, and/or FIB-assisted deposition are well utilized. The FIB 3-dimensional micromachining is demonstrated with the aid of a sample rotator. Good prospects in the device transplantation are identified as a new high-resolution method for microdevice assembly and device repair. These FIB applications can be visually performed using scanning ion microscope (SIM) images. Specifications of the FIB apparatus for these applications and FIB micromachining simulation are also discussed.

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OpenAlex reports 36 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

During the past ten years, a number of focused ion beam (FIB) applications in microelectronics have been demonstrated and steadily identified. In this paper, we will review FIB micromachining and device transplantation, in which processes of FIB sputtering, redeposition, and/or FIB-assisted deposition are well utilized. The FIB 3-dimensional micromachining is demonstrated with the aid of a sample rotator. Good prospects in the device transplantation are identified as a new high-resolution method for microdevice assembly and device repair. These FIB applications can be visually performed using scanning ion microscope (SIM) images. Specifications of the FIB apparatus for these applications and FIB micromachining simulation are also discussed.

Key concepts: Surface micromachining, Focused ion beam, Materials science, Microelectronics, Sputtering, Ion beam, Nanotechnology, Beam (structure)

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