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An RF antenna ion source (or radio frequency antenna ion source) is an internal multi-cusp design that can produce a particle beam of about ~30 to 40 mA current. It is used in high energy particle physics and in accelerator laboratories. Previous RF antennas would penetrate the porcelain enamel coating on the antenna section at high RF power. This problem has been corrected in the development stage with a ten layer coating of titanium dioxide, with approximately 1 mm thick coating.

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  • An RF antenna ion source (or radio frequency antenna ion source) is an internal multi-cusp design that can produce a particle beam of about ~30 to 40 mA current. It is used in high energy particle physics and in accelerator laboratories. Previous RF antennas would penetrate the porcelain enamel coating on the antenna section at high RF power. This problem has been corrected in the development stage with a ten layer coating of titanium dioxide, with approximately 1 mm thick coating. With the development of the RF antenna ion source, or "non-thermionic ion source," the ion source has an advantage over conventional cold cathodes and hot filament ion sources. The filament continuously burns out over time with a shorter lifespan, requiring venting of the ion source to atmosphere and rebuilding of the ion source. (en)
  • RF 안테나 이온원 (또는 무선 주파수 안테나 이온원)은 약 30 - 40 mA 전류의 을 생성할 수 있는 내부 멀티 교두 디자인이다. 그것은 고 에너지 입자 물리 및 가속기 실험실에서 사용된다. 이전 RF 안테나는 높은 RF 전력에서 안테나 부근에 법랑 코팅을 관통한다. 이 문제는 약 1 mm 두께의 코팅으로, 의 10층 코팅 개발 단계에서 수정되었다. (ko)
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  • RF 안테나 이온원 (또는 무선 주파수 안테나 이온원)은 약 30 - 40 mA 전류의 을 생성할 수 있는 내부 멀티 교두 디자인이다. 그것은 고 에너지 입자 물리 및 가속기 실험실에서 사용된다. 이전 RF 안테나는 높은 RF 전력에서 안테나 부근에 법랑 코팅을 관통한다. 이 문제는 약 1 mm 두께의 코팅으로, 의 10층 코팅 개발 단계에서 수정되었다. (ko)
  • An RF antenna ion source (or radio frequency antenna ion source) is an internal multi-cusp design that can produce a particle beam of about ~30 to 40 mA current. It is used in high energy particle physics and in accelerator laboratories. Previous RF antennas would penetrate the porcelain enamel coating on the antenna section at high RF power. This problem has been corrected in the development stage with a ten layer coating of titanium dioxide, with approximately 1 mm thick coating. (en)
rdfs:label
  • RF 안테나 이온원 (ko)
  • RF antenna ion source (en)
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