PCS-ECR-AN
Microwave Frequency Atom Plasma Cracker Source for Nitrogen or Reducing Gases for Most Demanding MBE Applications
The microwave atom plasma source for nitrogen or reducing gases PCS-ECR-AN is a fully UHV compatible component for most demanding MBE applications and surface modifications, suitable for a wide range of vacuum levels (UHV to HV). Microwaves with a frequency of 2.45 GHz are generated by a microwave magnetron and coupled into the plasma chamber, where a plasma is excited and the microwaves absorbed. The plasma density is enhanced by the magnetron cyclotron resonance effect, provided by a 86 mT magnetic quadrupole arranged around the plasma chamber. The electrons undergo electron cyclotron resonance (ECR) motion, which greatly enhances the electron path length and therefore the probability of collision with other molecules and subsequent ionisation. A specially designed aperture inhibits the release of ions from the plasma while allowing neutral nitrogen atoms to effuse out. The particles emitted from the source are largely thermalized ( <1 eV) and therefore, this plasma source is suitable for sensitive samples.
The source is fully bakeable, with an all-welded stainless steel vacuum envelope, and outstanding cooling from a full length water-jacket.With additional sets of the user-exchangeable apertures and extraction grids, the source can be easily reconfigured for oxidizing gases, as a downstram plasma source or as a dedicated atom or ion source.
SPECIFICATIONS
Working Principle | Microwave assisted plasma source |
E-beam power | 250 W max. at 2.45 GHz |
Gas Flow Rate | < 0.1 sccm to 100 sccm (mode dependant) |
Operating Modes | Atom mode |
Operating Pressure | < 10-7 - 10-5 mbar |
Optional Accessories |
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Mounting Flange | NW63CF (4.5 ") |
Insertion Depth | 300 mm |
Spot Size | ~25 mm at source |
SPARE PARTS
Aperture for PCS-ECR
Electrical feedthrough for PCS-ECR
PCS-RF-ReconAN Reconfiguration Set including Bornitrit aperture, plasma tube and connectors
Silicon heat conducting paste for PCS-ECR 25g5W/mK, QC-WLP-CQ-08