Nova Patents
EP1577927A2

Charged particle beam system

Abstract

A charged particle beam system uses an ion generator for secondary particle detection and charge neutralization. In some embodiments, the ion generator is configured to maintain an adequate gas pressure at the ion generator to generate ions, but a reduced pressure in the remainder of the vacuum chamber, so that another column can operate in the chamber either simultaneously or after an evacuation process that is much shorter than a process that would be required to evacuate the chamber from the full pressure required at the ion generator. The invention is particularly useful for repair of photolithography masks in a dual beam system.

EP1577927A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 11 March 2025, 1.5 years ago.

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19 claims: 13 independent, 6 dependent

  1. 1
    A charged particle beam system (100, 150, 200), comprising, a charged particle beam column (102, 104, 152, 154, 202, 204) for generating a charged particle beam; a work piece vacuum chamber (110, 160, 206) for containing a work piece to which the charged particle beam is directed; a charged particle detector, and an imaging system for generating an image signal based on information from the charged particle detector,     characterized by    said charged particle detector including an ionization chamber (1000, 1100) having an opening (1005, 1105) for allowing charged particles from the work piece vacuum chamber to enter the ionization chamber, the ionization chamber including:ionization chamber walls (1004) defining an ionization chamber interior region (1010, 1110);a gas inlet (1003) for supplying gas to the ionization chamber interior region (1010);and an electrode (1007, 1107) within the ionization chamber for accelerating the charged particles from the work piece vacuum chamber;the opening being sufficiently small to maintain within the ionization chamber a working pressure significantly greater than the pressure in the work piece chamber and sufficiently high to promote gas ionization cascades within the ionization chamber, and    the imaging system (1019) generating an image signal based upon currents at the electrode, the current at the electrode being related to particles emitted from the work piece upon impact of primary particles in the particle beam.
  2. 5
    The charged particle system of claims 3 or 4, wherein the channel electrode is conical in shape.
  3. 6
    The charged particle system of any of claims 3 though 5, wherein the channel electrode and the detector electrode are electrically isolated from one another.
  4. 7
    The charged particle system of any of claims 3 though 6, wherein the channel electrode further comprises a plurality of discretely biased electrode components.
  5. 8
    The charged particle system of any of claims 2 through 7, further comprising a magnetic field generation structure (1012) proximal to the opening for guiding charged particles into the opening.
  6. 9
    The charged particle system of any of claims 2 through 7 further comprising an electrostatic generation structure (1014) proximal to the opening for guiding charged particles into the opening.
  7. 10
    The charged particle system of any of the above claims in which the interior regions of the ionization chamber includes an ion producing gas maintained at a pressure of greater than about 10 N/m 2 and in which the work piece vacuum chamber pressure is maintained at a pressure of less than about 1.5 N/m 2 .
  8. 11
    The charged particle system of any of the above claims which the interior regions of the ionization chamber includes an ion producing gas maintained at a pressure of greater than about 40 N/m 2 and in which the work piece vacuum chamber pressure is maintained at a pressure of less than about 0.1 N/m 2 .
  9. 12
    The charged particle system of any of the above claims in which the interior regions of the ionization chamber includes an ion producing gas maintained at a pressure of greater than about 50.0 N/m 2 and in which in which the work piece vacuum chamber pressure is maintained at a pressure of less than about 0.1 N/m 2 .
  10. 13
    The charged particle system of any of the above claims in which the ionization chamber has a voltage applied to eject ions from the ionization chamber to neutralize some or all of the electrical charge the sample.
  11. 14
    The charged particle beam system of any of the above claims in which the charged particle beam column for generating a charged particle beam comprises a focused electron beam column (204) for directing a beam of electrons.
  12. 16
    The charged particle beam system of any of the above claims in which:the ionization chamber has an ionization chamber longitudinal axis;the charged particle beam has an optical axis;and the ionization chamber longitudinal axis is not co-axial with the optical axis.
  13. 17
    A charged particle beam system of any claims 1-15 in which the ionization chamber substantially surround a portion of the optical axis (1118) and in which the ionization chamber has apertures (1117, 1105) for passage of the charged particle beam.