IL177221A

Stage drive method and stage unit, exposure apparatus and device manufacturing method

Abstract

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Term

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  2. Filed
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25 claims: 6 independent, 19 dependent

  1. 1
    122 What is claimed is:1. A stage drive method in which a first stage is driven within an area in a two-dimensional plane of a predetermined range including a first area and a second area located on one side of the first area in a first axis direction where liquid is locally supplied, and a second stage is driven within an area of a predetermined range including the first area and a third area located on the other side of the first area in the first axis direction, wherein during a transition from a first state in which one of the stages is positioned in the first area to a second state in which the other stage is positioned in the first area, both of the stages are driven in the first axis direction in a state of proximity or contact with each other in the first axis direction.
  2. 2
    The stage drive method of Claim 1, wherein in the transition, the first and the second stages are driven in the state of proximity or contact with each other such that leakage of the liquid is prevented or suppressed.
  3. 3
    The stage drive method of Claim 1, wherein in the transition, the liquid continues to be retained by use of at least one of the first and second stages positioned at the first area.
  4. 4
    The stage drive method of Claim 1, wherein measurement beams are irradiated on reflection surfaces of a first mirror and a second mirror, which are respectively arranged on the first stage and the second stage on a surface besides the surface on the side where both stages are close or are in contact during the transition, and the position of the first and second stages is controlled based on reflection beams from the reflection surfaces of the first mirror and the second mirror.
  5. 5
    A stage unit, the unit comprising:a first stage that is movable within an area in a two-dimensional plane of a predetermined range including a first area and a second area located on one side of the first area in a first axis direction where liquid is locally supplied;a second stage that is movable within an area of a predetermined range including the first area and a third area located on the other side of the first area in the first axis direction;and a control unit that drives both of the first and the second stages in a state of proximity or contact with each other in the first axis direction, during a transition from a first state in which one of the stages is positioned in the first area to a second state in which the other stage is positioned in the first area.
  6. 6
    The stage unit of Claim 5, wherein in the transition, the first and second stages are driven in the state of proximity or contact with each other such that leakage of the liquid is prevented or suppressed.
  7. 7
    The stage unit ofClaim 5, wherein in the transition, the liquid continues to be retained by use of at least one of the first and second stages positioned at the first area. 123
  8. 8
    An exposure apparatus that exposes a substrate with an energy beam via a projection optical system and a liquid, the apparatus comprising:a liquid immersion system that supplies a liquid to a space directly below the projection optical system to form an immersion area;a first stage that is movable within an area including a first area where the projection optical system is located and a second area located on one side of the first area in a first axis direction;a second stage that is movable within an area including the first area and a third area located on the other side of the first area in the first axis direction;and a stage drive system that drives both of the first and second stages in a state of proximity or contact with each other in the first axis direction, during a transition from a first state in which one of the stages is positioned in the first area to a second state in which the other stage is positioned in the first area.
  9. 9
    The exposure apparatus of Claim 8 wherein in the transition, the first and second stages are driven in the state of proximity or contact with each other such that the immersion area is substantially maintained at directly below the projection optical system.
  10. 10
    The exposure apparatus of Claim 8, wherein in the transition, the first and second stages are driven in the state of proximity or contact with each other such that leakage of the liquid is prevented or suppressed.
  11. 11
    The exposure apparatus of Claim 8, wherein the first and second stages simultaneously move while maintaining a positional relationship between the stages in the first axis direction.
  12. 12
    The exposure apparatus of Claim 8 wherein a part of the upper end portion in one stage of the first stage and the second stage on the side facing the other stage is a plate shaped hangover portion protruding over other portion, and a step portion that can engage with at least a tip portion of the portion via a predetermined clearance is arranged in the other stage on at least a part of the surface facing the one stage, and in a state where the overhang portion and the step portion are engaged, a completely flat surface of a predetermined size can be formed by at least a part of the upper surface of the one stage and at least a part of the upper surface of the other stage.
  13. 13
    The exposure apparatus of Claim 8 wherein the first stage and the second stage each have a plate shaped overhang portion protruding over other portion in a part of the upper end portion on one side of a first axis direction, and a step portion that can engage with at least a tip portion of the overhang portion of the other stage via a predetermined clearance on at least a part of a surface on the other side of the first stage and the second stage in the first axis direction, and --------ina-state^wherethe-overhangportionofonestageandthe^stepportion ofthe other stage are engaged, a completely flat surface of a predetermined size can be formed by at least a part of the upper surface of the one stage and at least a part of the upper surface of the other stage. 124
  14. 14
    The exposure apparatus of Claim 8 wherein, the stage drive system maintains the state where the first stage and the second stage are close together during the transition, and in at least one of the first stage and the second stage, a suppressing member is arranged so as to suppress leakage of the liquid from a gap between the stages by being positioned in the gap between the stages during the transition.
  15. 15
    The exposure apparatus of Claim 14 wherein the suppressing member includes at least one of a seal member and a water-repellent coating.
  16. 16
    The exposure apparatus of Claim 8 wherein in the transition, the liquid continues to be held in the space between the projection optical system and at least one of the first and second stages positioned at the first area.
  17. 17
    The exposure apparatus of Claim 8, the apparatus further comprising:a first mirror and a second mirror arranged on the first stage and the second stage, respectively, on a surface besides the surface on the side where both stages are close together or are in contact during the transition;and an interferometer that measures the position of the first stage and the second stage by irradiating measurement beams respectively on reflection surfaces of the first mirror and the second mirror, based on reflection beams from the reflection surfaces of the first mirror and the second mirror.
  18. 18
    The exposure apparatus of any one of Claims 8 to 17, wherein the first stage and the second stage are both stages on which substrates can be mounted, the apparatus further comprising:a first mark detection system that is arranged above the second area and that detects a mark located on the first stage;and a second mark detection system that is arranged above the third area and that detects a mark located on the second stage.
  19. 19
    The exposure apparatus of any one of Claims 8 to 17, wherein the first stage is a stage on which a substrate can be mounted, and the second stage is used for a predetermined measurement.
  20. 20
    The exposure apparatus of Claim 19, wherein on the second stage, at least one of a part of a sensor that receives the energy beam via the projection optical system and a fiducial mark plate on which at least one fiducial mark is formed is arranged.
  21. 21
    The exposure apparatus of Claim 19, wherein the second stage is used for measurement of the energy beam via the ——projection-optical,, system.andthe. liquid_____________________________________________
  22. 22
    The exposure apparatus of Claim 19, wherein when exposing a substrate with the energy beam, the stage drive system drives the first stage based on at least a part of the measurement results using the second i 125 stage.
  23. 23
    The exposure apparatus of Claim 22, wherein the stage drive system drives each of the stages so that measurement using the second stage is being performed, while exchange of a substrate on the first stage is being performed.
  24. 24
    The exposure apparatus of Claim 19, wherein on at least a part of the surface of the second stage on the side facing the first stage, a reflection surface used for position measurement of the second stage is arranged.
  25. 25
    A device manufacturing method that includes a lithography-step in which a substrate is exposed with the energy beam, using the exposure apparatus according to any one of Claims 8 to 24. Γ no. Moshe Zvh' r?-eys dn' hrael 52520 □’Ewan τί 'ώ , crnxan rwzn ατα pnow pnszn irn nr “jaoa ,Ρ’ηη ηχΏ- naoana mavia nairmaa np’ioz .zrtwan rwaa mp’nn ρηυ1? αχηΓΐη.r. Geodauer □ιηπη Pi? 4VWW* · SW J«w\ _ > „.~. 2$ L r2)12 1022:10 4Q2:CD .(mcna navin) cras 'an rwa
Independent claims25