EP1540692A2

Particle-optical device and detection means

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 18 September 2023, 3 years ago.

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  4. Projected expiry
  5. Today

18 claims: 3 independent, 15 dependent

  1. 1
    Claims of equivalent WO 2004027808 A2 Claims 1. A particle-optical apparatus comprising a sample holder arranged for receiving a sample, a particle source arranged for producing a primary beam of first electrically charged particles along an optical axis for irradiating said sample, a first detector arranged for amplifying and detecting electron signals emanating from the sample due to said irradiation, a detection space formed by at least said sample holder and said first detector, and an immersion lens arranged for providing a magnetic field for focusing the primary beam in the vicinity of the sample holder, wherein said first detector is arranged for providing an electric field in the detection space, and wherein the detection space is arranged for comprising a gas, said first detector and said immersion lens arranged for providing the electric field and the magnetic field such that the detection space comprises a first portion in which the electric field includes a component that is oriented transverse to the magnetic field.
  2. 17
    19. A detector comprising a ring-shaped electrode and an amplifier, for use as first detector in a particle-optical apparatus comprising a sample holder arranged for receiving a sample, a particle source arranged for producing a primary beam of first electrically charged particles along an optical axis for irradiating said sample, said first detector, a detection space formed by at least said sample holder and said first detector, and an immersion lens arranged for providing a magnetic field for focusing the primary beam in the vicinity of the sample holder, wherein said first detector are arranged for providing an electric field in the detection space and for detecting electrons such as secondary electrons emanating from the sample due to said irradiation, and wherein the detection space is arranged for comprising a gas, said first detector and said immersion lens arranged for providing the electric field and the magnetic field such that the detection space comprises a first portion in which the electric field is oriented transverse to the magnetic field.
  3. 18
    20. Method of detecting electron signals in a particle-optical apparatus wherein a sample is irradiated by a primary beam of charged particles and secondary electrons are liberated from said sample by said irradiation, wherein said secondary electrons are accelerated towards a detector and a detection space is at least formed by said detector and said sample, said detection space comprising a gas, and wherein an immersion lens provides a magnetic field in said detection space, said electric field and said magnetic field provided such that the detection space comprises at least a portion wherein the electric field is oriented transverse to the magnetic field.