EP2857902A1

Immersion exposure apparatus, immersion exposure method, and device fabricating method

Abstract

Positional information of a movable body (RST) in a Y-axis direction is measured using an interferometer (16y) and an encoder ((24A, 26A1), (24B, 26B1)) whose short-term stability of measurement values excels when compared with the interferometer, and based on the measurement results, a predetermined calibration operation for obtaining correction information for correcting measurement values of the encoder is performed. Accordingly, by using measurement values of the interferometer, correction information for correcting the measurement values of the encoder whose short-term stability of the measurement values excels the interferometer is obtained. Then, based on the measurement values of the encoder and the correction information, the movable body is driven in the Y-axis direction with good precision.

EP2857902A1, drawing sheet 1
Sheet 1 of 32

Term

0.3 yearsto projected expiry

Projected expiry 19 January 2027, counted from filing; an application has no term until it is granted.

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

21 claims: 2 independent, 19 dependent

  1. 1
    A liquid immersion exposure apparatus that has an illumination optical system for illuminating a mask with illumination light and a projection optical system for projecting a pattern image of the illuminated mask on a substrate, and that exposes the substrate with the illumination light via the projection optical system and a liquid, the apparatus comprising:a nozzle member provided surrounding the projection optical system and configured to supply the liquid;a first stage system placed above the projection optical system, and having a first movable body for holding the mask and a first electromagnetic motor for driving the first movable body;a first detection system configured to detect a mark of the mask or a mark of the first movable body;a first encoder system having a plurality of first heads arranged to each irradiate a first measurement beam to a first grating section placed substantially parallel to a predetermined plane orthogonal to an optical axis of the projection optical system and having a reflective grating, the first encoder system being configured to measure positional information of the first movable body that is moved by the first electromagnetic motor;a second stage system placed below the projection optical system, and having a second movable body for holding the substrate and a second electromagnetic motor for driving the second movable body;a second detection system configured to detect a mark of the substrate or a mark of the second movable body;a second encoder system having a plurality of second heads arranged to each irradiate a second measurement beam to a second grating section placed substantially parallel to the predetermined plane and having a reflective grating, the second encoder system being configured to measure positional information of the second movable body that is moved by the second electromagnetic motor;and a control system configured to control a drive of the first movable body by the first electromagnetic motor based on measurement information of the first encoder system and to control a drive of the second movable body by the second electromagnetic motor based on measurement information of the second encoder system, in order to move each of the mask and the substrate relative to the illumination light, in an exposure operation of the substrate, wherein in each of the exposure operation and a detection operation of the mark by the first detection system, the positional information of the first movable body is measured by the first encoder system, and in each of the exposure operation and a detection operation of the mark by the second detection system, the positional information of the second movable body is measured by the second encoder system.
  2. 2
    The liquid immersion exposure apparatus according to Claim 1, wherein in an exchange operation of a mask held by the first movable body, the positional information of the first movable body is measured by the first encoder system.
  3. 3
    The liquid immersion exposure apparatus according to Claim 1 or 2, wherein in an exchange operation of a substrate held by the second movable body, the positional information of the second movable body is measured by the second encoder system.
  4. 4
    The liquid immersion exposure apparatus according to any one of Claims 1 to 3, wherein the control system is configured to control the drive of the second movable body while compensating a measurement error of the second encoder system that occurs due to at least one of the second grating section and the second head.
  5. 5
    The liquid immersion exposure apparatus according to Claim 4, wherein the control system is configured to control the drive of the second movable body using correction information regarding at least one of a pitch and a deformation of the grating formed in the second grating section.
  6. 6
    The liquid immersion exposure apparatus according to Claim 4 or 5, wherein the control system is configured to control the drive of the second movable body using correction information regarding at least one of a tilt and an optical characteristic of the second head.
  7. 7
    The liquid immersion exposure apparatus according to any one of Claims 1 to 6, wherein the second stage system has a plurality of second movable bodies including the second movable body, each of which holds a substrate, and a part of the second encoder system is placed around the second detection system and the second encoder system is configured to measure positional information of the plurality of second movable bodies.
  8. 8
    The liquid immersion exposure apparatus according to any one of Claims 1 to 7, wherein the positional information of the second movable body is measured by three or four of the second heads that face the second grating section, of the plurality of second heads, and the second heads that face the second grating section change from one of the three second heads and the four second heads to the other as the second movable body moves.
  9. 9
    The liquid immersion exposure apparatus according to any one of Claims 1 to 8, wherein the second grating section includes a plurality of scales in each of which a grating is formed, and the positional information of the second movable body is measured by the second heads that respectively face the plurality of scales, of the plurality of second heads.
  10. 10
    The liquid immersion exposure apparatus according to Claim 9, wherein the second grating section includes four of the scales, and the positional information of the second movable body is measured by the second heads that respectively face at least three of the four scales.
  11. 11
    A liquid immersion exposure method of illuminating a mask with illumination light and exposing a substrate with the illumination light via a projection optical system and a liquid, the method comprising:supplying the liquid to between the projection optical system and the substrate by a nozzle member provided surrounding the projection optical system;moving a first movable body for holding the mask, by a first stage system placed above the projection optical system and having the first movable body and a first electromagnetic motor for driving the first movable body, so that a mark of the mask or a mark of the first movable body is detected by a first detection system;measuring positional information of the first movable body that is driven by the first electromagnetic motor, by a first encoder system having a plurality of first heads arranged to each irradiate a first measurement beam to a first grating section placed substantially parallel to a predetermined plane orthogonal to an optical axis of the projection optical system and having a reflective grating;moving a second movable body for holding the substrate, by a second stage system placed below the projection optical system and having the second movable body and a second electromagnetic motor for driving the second movable body, so that a mark of the substrate or a mark of the second movable body is detected by a second detection system;measuring positional information of the second movable body that is driven by the second electromagnetic motor, by a second encoder system having a plurality of second heads arranged to each irradiate a second measurement beam to a second grating section placed substantially parallel to the predetermined plane and having a reflective grating;and controlling a drive of the first movable body by the first electromagnetic motor based on measurement information of the first encoder system and controlling a drive of the second movable body by the second electromagnetic motor based on measurement information of the second encoder system, in order to move each of the mask and the substrate relative to the illumination light, in an exposure operation of the substrate, wherein in each of the exposure operation and a detection operation of the mark by the first detection system, the positional information of the first movable body is measured by the first encoder system, and in each of the exposure operation and a detection operation of the mark by the second detection system, the positional information of the second movable body is measured by the second encoder system.
  12. 12
    The liquid immersion exposure method according to Claim 11, wherein in an exchange operation of a mask held by the first movable body, the positional information of the first movable body is measured by the first encoder system.
  13. 13
    The liquid immersion exposure method according to Claim 11 or 12, wherein in an exchange operation of a substrate held by the second movable body, the positional information of the second movable body is measured by the second encoder system.
  14. 14
    The liquid immersion exposure method according to any one of Claims 11 to 13, wherein the drive of the second movable body is controlled while a measurement error of the second encoder system that occurs due to at least one of the second grating section and the second head is being compensated.
  15. 15
    The liquid immersion exposure method according to Claim 14, wherein the drive of the second movable body is controlled using correction information regarding at least one of a pitch and a deformation of the grating formed in the second grating section.
  16. 16
    The liquid immersion exposure method according to Claim 14 or 15, wherein the drive of the second movable body is controlled using correction information regarding at least one of a tilt and an optical characteristic of the second head.
  17. 17
    The liquid immersion exposure method according to any one of Claims 11 to 16, wherein a substrate is held by each of a plurality of second movable bodies including the second movable body, and positional information of the plurality of second movable bodies is measured by the second encoder system a part of which is placed around the second detection system.
  18. 18
    The liquid immersion exposure method according to any one of Claims 11 to 17, wherein the positional information of the second movable body is measured by three or four of the second heads that face the second grating section, of the plurality of second heads, and the second heads that face the second grating section change from one of the three second heads and the four second heads to the other as the second movable body moves.
  19. 19
    The liquid immersion exposure method according to any one of Claims 11 to 18, wherein the second grating section includes a plurality of scales in each of which a grating is formed, and the positional information of the second movable body is measured by the second heads that respectively face the plurality of scales, of the plurality of second heads.
  20. 20
    The liquid immersion exposure method according to Claim 19, wherein the second grating section includes four of the scales, and the positional information of the second movable body is measured by the second heads that respectively face at least three of the four scales.
  21. 21
    A device manufacturing method, comprising:a lithography process of transferring a pattern on a substrate using the exposure method according to any one Claims 11 to 20.
Independent claims21