Schmor Particle Accelerator Consulting Inc.

Canada

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Classe IPC
H05H 13/00 - Accélérateurs à résonance magnétiqueCyclotrons 3
H05H 7/00 - Détails des dispositifs des types couverts par les groupes 3
H05H 15/00 - Méthodes ou dispositifs pour accélérer des particules chargées non prévus ailleurs 1
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1.

Particle accelerator and method of reducing beam divergence in the particle accelerator

      
Numéro d'application 14119033
Numéro de brevet 09386681
Statut Délivré - en vigueur
Date de dépôt 2012-05-22
Date de la première publication 2014-04-10
Date d'octroi 2016-07-05
Propriétaire Schmor Particle Accelerator Consulting Inc. (Canada)
Inventeur(s) Schmor, Paul

Abrégé

An oscillating field particle accelerator and a method of reducing beam divergence in the particle accelerator are provided. The particle accelerator includes an intermediate electrode disposed within the particle accelerator between a source of charged particles and a second electrode of the particle accelerator. The charged particles are exposed to a first electric field extending between the source and the intermediate electrode prior to being exposed to a second electric field extending between the intermediate electrode and the second electrode. The magnitude of the first electric field is less than the peak magnitude of the second electric field, and may be less than or equal to a minimum magnitude of the second electric field occurring during a phase acceptance time period associated with a phase acceptance of the particle accelerator. The accelerated charged particles emerge from the second electrode as a non-diverging or reduced divergence particle beam.

Classes IPC  ?

  • H05H 13/00 - Accélérateurs à résonance magnétiqueCyclotrons
  • H05H 7/00 - Détails des dispositifs des types couverts par les groupes
  • H05H 15/00 - Méthodes ou dispositifs pour accélérer des particules chargées non prévus ailleurs

2.

PARTICLE ACCELERATOR AND METHOD OF REDUCING BEAM DIVERGENCE IN THE PARTICLE ACCELERATOR

      
Numéro de document 02836816
Statut Délivré - en vigueur
Date de dépôt 2012-05-22
Date de disponibilité au public 2012-11-29
Date d'octroi 2018-02-20
Propriétaire SCHMOR PARTICLE ACCELERATOR CONSULTING INC. (Canada)
Inventeur(s) Schmor, Paul Wesley

Abrégé

A cyclotron and a method of reducing beam divergence in the cyclotron are provided. The cyclotron includes an intermediate electrode disposed between a source of charged particles and a second electrode. Each of the source, intermediate electrode and second electrode are internal to the cyclotron. The charged particles are exposed to a first electric field extending between the source and the intermediate electrode prior to being exposed to a second, time-varying electric field extending between the intermediate electrode and the second electrode. The magnitude of the first electric field is less than the peak magnitude of the second electric field, and may be less than or equal to a minimum magnitude of the second electric field occurring during a phase acceptance time period associated with a phase acceptance of the cyclotron. The accelerated charged particles emerge from the second electrode as a non-diverging or reduced divergence particle beam.

Classes IPC  ?

  • H05H 7/00 - Détails des dispositifs des types couverts par les groupes
  • H05H 13/00 - Accélérateurs à résonance magnétiqueCyclotrons

3.

PARTICLE ACCELERATOR AND METHOD OF REDUCING BEAM DIVERGENCE IN THE PARTICLE ACCELERATOR

      
Numéro d'application CA2012050336
Numéro de publication 2012/159212
Statut Délivré - en vigueur
Date de dépôt 2012-05-22
Date de publication 2012-11-29
Propriétaire SCHMOR PARTICLE ACCELERATOR CONSULTING INC. (Canada)
Inventeur(s) Schmor, Paul

Abrégé

An oscillating field particle accelerator and a method of reducing beam divergence in the particle accelerator are provided. The particle accelerator includes an intermediate electrode disposed within the particle accelerator between a source of charged particles and a second electrode of the particle accelerator. The charged particles are exposed to a first electric field extending between the source and the intermediate electrode prior to being exposed to a second electric field extending between the intermediate electrode and the second electrode. The magnitude of the first electric field is less than the peak magnitude of the second electric field, and may be less than or equal to a minimum magnitude of the second electric field occurring during a phase acceptance time period associated with a phase acceptance of the particle accelerator. The accelerated charged particles emerge from the second electrode as a non-diverging or reduced divergence particle beam.

Classes IPC  ?

  • H05H 7/00 - Détails des dispositifs des types couverts par les groupes
  • H05H 13/00 - Accélérateurs à résonance magnétiqueCyclotrons