Claims
- 1. An improved multipole mass spectrometer, comprising:a low voltage field emission array comprising a plurality of emission tips, wherein each of said emission tips is surrounded by an emission gate; a means for applying an electrical potential difference between said plurality of emission tips and said emission gates, said potential difference sufficient to initiate quantum tunneling at said emission tips thereby generating a flux of electrons; an acceleration tube for directing said electrons into an ionization cage, said ionization cage in communication with said field emission array, said acceleration tube held at a potential sufficient to prevent electrons emitted from said tips from shorting to said gates; a first drift region comprising said ionization cage, said field emission array and said acceleration tube; a means for introducing molecules of an analyte material sample into said ionization cage, wherein at least some of said molecules are ionized by said electrons in said ionization cage to provide one or more analyte ions of said analyte molecule; an ion focus electrode for directing and focusing said analyte ions into a multipole mass filter; an ion detector in communication with said ionization cage and said mass filter; and a second drift region comprising said ionization cage, said ion focus electrode, and said mass filter, wherein said first and said second drift regions share a common atmosphere.
- 2. The mass spectrometer of claim 1, wherein said multipole mass filter is a quadrupole mass filter.
- 3. The mass spectrometer of claim 1, where said field emission array consists of a plurality of individual field emission arrays.
- 4. The mass spectrometer of claim 3, wherein each of said individual field emission arrays can be individually selected.
- 5. The mass spectrometer of claim 1, wherein the potential difference between said emission tips and said emission gates is about at least 100V but less than 200V.
- 6. The mass spectrometer of claim 5, wherein the potential of said emission tips is about −55V and wherein the potential of said emission gates is about +50V.
- 7. The mass spectrometer of claim 1, wherein said acceleration tube is biased with an electrical potential that is more positive than said emission gate potential.
- 8. The mass spectrometer of claim 1, further including an electron reflector cage surrounding said ionization cage.
- 9. The mass spectrometer of claim 1, wherein said reflector cage is held at the same potential as said emission tip potential.
- 10. The mass spectrometer of claim 1, wherein said electrons emanating from said field emission array enter said ionization cage having an energy of about 100 eV.
- 11. The mass spectrometer of claim 1, wherein said field emission array includes electrical feedback control means for producing a constant current of electrons.
- 12. The mass spectrometer of claim 1, wherein said field emission array is fabricated from a single piece of silicon.
Parent Case Info
This application claims the benefit of provisional application No. 60/086,349, filed May 20, 1998.
STATEMENT OF GOVERNMENT INTEREST
This invention was made with Government support under contract DE-AC04-94AL85000 awarded by the U.S. Department of Energy to Sandia Corporation. The Government has certain rights in this invention.
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
3725700 |
Turner |
Apr 1973 |
A |
4221964 |
Schlereth et al. |
Sep 1980 |
A |
4272699 |
Faubel et al. |
Jun 1981 |
A |
5464975 |
Kirchner et al. |
Nov 1995 |
A |
Non-Patent Literature Citations (2)
Entry |
Austin, W.E.; Holme, A.E.; Leck, J.H.; “The Mass Filter: Design and Performance” Quadrupole Mass Spectromtery and its applications, P.H. Dawson (eds.), Elsevier Scientific Publishing Co., Amsterdam 1976, pp. 121-152. |
Ferran, R.J.; Boumsellek, S.; “High-pressure effects in miniature arrays of quadrupole analyzers for residual gas analysis from 10−9 to 10−2 Torr”, J. Vac. Sci Technol. (A), vol. 14 No. 3 May/Jun. 1996. |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/086349 |
May 1998 |
US |