EP0844530A2

Reduction of pattern noise in scanning lithographic system illuminators

Abstract

An illumination system for a scanning lithography system used in the manufacture of semiconductor devices having a multiplex array or multi-image array resulting in pattern noise that is reduced by a spatially frequency modulated multiplex array or frequency modulating the pulse rate of a pulsed laser source. A pulsed laser source is used to illuminate a reticle containing a pattern thereon to be reproduced onto a semiconductor. An illumination system using a multiplex array or multi-image array to obtain macro uniformity of an illumination slot or field introduces micro non-uniformity that results in undesirable pattern noise or fixed pattern noise resulting in undesirable imaging properties. The undesirable effects of the pattern noise are eliminated or substantially reduced by spatially modulating the multiplex array in a scanning direction so that the periodic pattern has a linear magnification dependent on position. In another embodiment the pulse rate of the pulsed laser source is frequency modulated. The present invention improves linewidth control, linewidth variation, and edge roughness.

EP0844530A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 3 November 2017, 8.9 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

20 claims: 4 independent, 16 dependent

  1. 1
    An illumination system for use in scanning lithography comprising:an illumination source, said illumination source providing electromagnetic radiation;an optical system receiving the electromagnetic radiation from said illumination source, said optical system forming an illumination slot for projecting an image of a reticle onto a photosensitive resist covered wafer, the illumination slot scanning the reticle;a multiplex array formed as a part of said optical system;and means, associated with said optical system, for preventing alising due to periodic complex components caused by spatial micro-infirmities in the illumination slot;whereby pattern noise produced by said multiplex array is reduced.
  2. 9
    An illumination system for use in scanning lithography comprising:a pulsed illumination source, said pulsed illumination source providing electromagnetic radiation and having a pulse rate;an optical system receiving the electromagnetic radiation from said pulsed illumination source, said optical system forming an illumination slot for projecting an image of a reticle onto a photosensitive resist covered wafer, the illumination slot scanning the reticle in a scan direction;and a multiplex array formed as a part of said optical system, said multiplex array having a spatially frequency modulated pattern in the scan direction thereon;whereby pattern noise is reduced.
  3. 15
    An illumination system for use in scanning lithography comprising:a pulsed illumination source, said pulsed illumination source providing electromagnetic radiation and having a pulse rate;an optical system receiving the electromagnetic radiation from said pulsed illumination source, said optical system forming an illumination slot for projecting an image of a reticle onto a photosensitive resist covered wafer, the illumination slot scanning the reticle in a scan direction;a multiplex array formed as a part of said optical system;and a modulator coupled to said illumination source, said modulator frequency modulating the pulse rate of said pulsed illumination source,    whereby pattern noise produced by said multiplex array is reduced.
  4. 18
    A scanning lithographic system comprising:a pulsed laser illumination source having a pulse rate;a frequency modulator coupled to said pulsed laser illumination source, said frequency modulator frequency modulating the pulse rate of the pulsed laser illumination source;a beam conditioner positioned to receive electromagnetic radiation from said pulsed laser illumination source;a multiplex array positioned to receive the electromagnetic radiation from said beam conditioner;a condenser positioned to receive electromagnetic radiation form said multiplex array;an illumination plane following said condenser, a rectangular illumination slot formed at said illumination plane;a relay conjugating said rectangular illumination slot to a reticle, the rectangular illumination slot illuminating a portion of the reticle;projection optics, said projection optics imaging the reticle onto a photosensitive resist covered wafer;a reticle stage coupled to said reticle;a wafer stage coupled to said wafer;a stage control coupled to said reticle stage and said wafer stage, said stage control controlling the movement of reticle stage and said wafer stage so that the reticle and the wafer are synchronously scanned exposing a portion of the wafer with the image of the reticle.