Septum Electromagnet

Septum Electromagnet
Details:
Septum electromagnet uses the principle of electromagnetic induction, and the magnetic field can attract or repel ferromagnetic materials, thereby exerting force on charged particles to achieve particle acceleration or deflection. Septum electromagnets are designed for particle accelerators and beamlines to separate or extract a charged particle beam from the main beam path with minimal disturbance, and they are particularly useful in applications where the main beam must continue unaffected while a portion of the beam is deflected or extracted. The septum magnet achieves this by combining a thin, low-field region (the "septum") with a strong magnetic field region to deflect the beam.
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In accelerators, septum electromagnets are mainly used to control, guide and accelerate charged particles. Specifically, it can provide focusing force, maintain the stability and focus of the particle beam, and ensure that particles can be accelerated along the predetermined path. It can also adjust the energy and direction of particles to meet the needs of different experiments or applications. In some advanced accelerators, sputum electromagnets are also used in conjunction with other types of electromagnets or accelerator components to achieve efficient acceleration and precise control of particles. Septum electromagnets are particularly useful in applications where the main beam must continue unaffected while a portion of the beam is deflected or extracted. The main beam passes through the low-field region near the septum plate, experiencing minimal deflection while the portion of the beam to be deflected enters the high-field region, where it is steered by the strong magnetic field, and meanwhile the septum plate physically separates the two regions, ensuring the main beam remains undisturbed.

 

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Applications

 

Septum electromagnets have different types, and each serve different purpose. Below is a short summary:

 

  • 1. DC type, it operates with a constant magnetic field, typically used for slow beam extraction.
  • 2. Pulsed type, it generates a short, intense magnetic pulse, often used for fast beam extraction or injection.
  • 3. Electrostatic type, it uses an electric field instead of a magnetic field for beam separation, suitable for low-energy beams.

 

Different type has different application, and their main applications are listed below:

 

  • √  Beam extraction, extract a beam from a circular accelerator (e.g., a synchrotron) for experiments or other applications.
  • √  Beam injection, inject a beam into a circular accelerator from an external source (e.g., a linear accelerator).
  • √  Beam transfer, transfer beams between different sections of an accelerator or between accelerators.
  • √  Beam dumping, divert a beam into a beam dump when it is no longer needed or in case of an emergency.
  • √  Particle colliders, separate beams after collisions or to steer beams into collision points.

 

Fabmann is dedicated to provide custom fabrication service for all types of electromagnets, and we can tailor to meet the specific requirements of your particle accelerator or beamline system. Our team has extensive expertise in designing and manufacturing high-performance septum magnets, ensuring precision, reliability, and minimal beam disturbance. From material selection and magnetic field optimization to thermal management and mechanical stability, we work closely with you to deliver solutions that integrate seamlessly into your application. Whether you need DC, pulsed, or electrostatic septum magnets, we have the capability to provide custom designs that meet your exact needs.

 

 

 

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