Accelerator and particle beam irradiation system
US-10548212-B2 · Jan 28, 2020 · US
US10757799B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10757799-B2 |
| Application number | US-201816604316-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 6, 2018 |
| Priority date | Apr 18, 2017 |
| Publication date | Aug 25, 2020 |
| Grant date | Aug 25, 2020 |
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A magnet device that includes upper and lower disk-shaped return yokes, a pair of upper magnetic pole and lower magnetic pole respectively fixed to a disk-shaped surface of the upper return yoke and a disk-shaped surface of the lower return yoke, in which a space to circulate and accelerate an ion beam is formed between the upper magnetic pole and the lower magnetic pole. The upper magnetic pole and the lower magnetic pole have a plurality of concave and convex parts along a track along which the ion beam circulates, are plane-symmetrical with respect to a horizontal symmetry plane formed by the track along which an ion beam circulates, and are plane-symmetrical to one of the vertical planes vertical to the horizontal symmetry plane. Also, the magnetic pole intervals between the concave parts of the upper magnetic pole and the lower magnetic pole are different from each other.
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The invention claimed is: 1. A particle beam accelerator, comprising: a magnet device that includes return yokes, and a pair of magnetic poles fixed to flat surfaces of the return yokes, wherein a space to circulate and accelerate an ion beam is formed between the pair of magnetic poles, and the pair of magnetic poles have a plurality of concave structures and convex structures along a track along which the ion beam circulates, are plane-symmetrical with respect to a track plane formed by the track along which the ion beam circulates, and are plane-symmetrical to one of vertical planes vertical to the track plane, and distances between the plurality of concave structure parts of the pair of magnetic poles are different. 2. The particle beam accelerator according to claim 1 , wherein there are convex parts having different shapes and convex parts having substantially a congruent shape when the plurality of convex structures are projected onto the track plane along which the ion beam circulates, and an interval of concave parts sandwiched between the convex parts having different shapes is larger than an interval of concave parts sandwiched between the convex parts having substantially a congruent shape. 3. The particle beam accelerator according to claim 2 , further comprising: a beam extraction electromagnet that is provided in a space of the concave part sandwiched between the convex parts having substantially a congruent shape. 4. The particle beam accelerator according to claim 1 , wherein there are convex parts having different shapes and convex parts having substantially a congruent shape when the plurality of convex structures are projected onto the track plane along which the ion beam circulates, and an interval of concave parts sandwiched between the convex parts having different shapes is smaller than an interval of concave parts sandwiched between the convex parts having substantially a congruent shape. 5. The particle beam accelerator according to claim 4 , wherein a magnetic field intensity between the concave parts sandwiched between the convex parts having different shapes is stronger than an magnetic field intensity between the concave parts sandwiched between the convex parts having a substantially congruent shape. 6. The particle beam accelerator according to claim 5 , further comprising: a beam extraction electromagnet that is provided in a space of the concave part sandwiched between the convex parts having different shapes. 7. A particle beam therapy apparatus, comprising: the particle beam accelerator according to claim 1 .
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