EP0403418A2

High density plasma deposition and etching apparatus.

Abstract

The high density RF plasma generator of this invention uses special antenna configurations (15) to launch RF waves at low frequency such as 13.56 MHz along a magnetic field supplied by an external magnetic field generator (16.17) in a discharge space (14) where the working gas is introduced and which is used alone or in conjunction with a process chamber (18) where specimen substrates (20) are located to either deposit or etch films from a substrate or to sputter deposit films to a substrate. The plasma etching, deposition and/or sputtering system comprises the high density RF plasma generator, the external magnetic field, the gas injection and control system, the antenna system (15) and associated power supplies (48), the process chamber (18), and the means to couple plasma from the generator to substrates or targets, including magnetic means (36) to enhance plasma uniformity at the substrates (20) or targets (92).

EP0403418A2, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Projected expiry passed 12 June 2010, 16.3 years ago.

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44 claims: 7 independent, 37 dependent

  1. 1
    A plasma deposition or etching apparatus where gas is introduced into a plasma generator and is converted to plasma by the action of an RF field provided by an antenna and an axial magnetic field provided by magnetic field coils and said plasma is transported along the magnetic field into a separate process chamber to a substrate where either a film is formed or an existing film is etched away.
  2. 2
    A plasma deposition or etching apparatus comprising of:(a) a plasma generator chamber into which gases are injected and converted to plasma by the action of an RF electric field provided by an antenna mounted on the generator chamber (b) a means to apply RF power to the antenna a process chamber connected to the generator chamber which is evacuated with vacuum pumps and houses an electrically isolated substrate holder onto which a substrate is mounted (c) a gas injection system for delivering gases into the process chamber (d) a magnetic coils means to provide an axial magnetic field in the plasma generator and additional magnetic coil(s) to transport the plasma from the generator into the process chamber and to the substrate.
  3. 4
    An RF ion source comprising:(a) a plasma generation chamber, an antenna means to launch rf waves into said generation chamber which act in combination with an axial magnetic field to generate a dense plasma (b) a magnetic means for providing an axial magnetic field in the generator chamber (c) ion extraction electrodes adjacent to said plasma generator so as to extract ions from the plasma.
  4. 5
    An antenna, comprising:(a) A first current loop, the first current loop having a current flow in a first direction;and (b) A second current loop, the second current having a current flow in a second direction.
  5. 17
    A plasma processing apparatus, comprising:(a) An antenna, the antenna radiating electromagnetic waves;(b) a plasma generation chamber, the plasma generation chamber being proximate to and in electromagnetic communication with the antenna;(c) a first fluid injector, the first fluid injector introducing a fluid into the plasma generation chamber, thereby permitting the creation of a plasma within the plasma generation chamber;(d) a magnetic field generator, the magnetic field generator generating a magnetic field;(e) a process chamber, the plasma being transported to the process chamber by the magnetic field;(f) a second fluid injector, the second fluid injector introducing a fluid into the process chamber. (g) a current controller, the current controller controlling the current within the magnetic field generator, thereby controlling plasma shape;(h) a substrate holder, the substrate holder residing within the process chamber;(i) a substrate, the substrate being mounted on the substrate holder, the substrate thereby being subjected to the plasma.
  6. 39
    A method of radiating electromagnetic waves, comprising the steps of:(a) causing electromagnetic energy to flow in a first angular direction within a first substantially planar circular loop;(b) causing the electromagnetic energy to flow in a second, opposite angular direction within a second substantially planar parallel circular loop separated by a distance from the first substantially planar circular loop so as to satisfy the equation. [w/w c ● w p ²/C²k z ²]² = 1+ (3.83/k z ⁹)²
  7. 41
    A method of plasma processing, comprising the steps of:(a) radiating electromagnetic energy into a plasma generation chamber;(b) injecting a first gas into the irradiated plasma generation chamber, thereby creating a plasma;(c) generating a variable magnetic field proximate the plasma generation chamber, the variable magnetic field permitting manipulation of the plasma;(d) transporting the plasma to an adjacent process chamber;(e) injecting a second gas into the process chamber;and (f) bombarding a substrate within the process chamber with the plasma, thereby permitting coating and etching of the substrate by the plasma.