IP Library › Granted Patent US 10,133,195
Granted Patent B2
US 10,133,195 · App. 14/489,154 · Granted Nov 20, 2018

Movable body drive method, movable body drive system, pattern formation method, pattern forming apparatus, exposure method, exposure apparatus, and device manufacturing method

Inventor: Yuichi Shibazaki (Kumagaya, JP)
Assignee: NIKON CORPORATION
G03F7/70725G01B11/27G01D5/26G01D5/266G01D18/002G03F7/70141G03F7/70341G03F7/70483G03F7/70516G03F7/70716G03F7/70775G03F7/70975Y10T29/49826
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Quick Facts
Patent No.
US 10,133,195
App. No.
14/489,154
Granted
Nov 20, 2018
Kind
B2
Abstract

An exposure apparatus exposes a substrate with illumination light via a projection optical system, and includes a frame member, a mark detection system that detects a mark of the substrate, a mask stage system having a first movable body to hold a mask, a first encoder system having first heads that each irradiate a first measurement beam to a first grating section, a substrate stage system having a second movable body to hold the substrate, a second encoder system having second heads that each irradiate a second measurement beam to a second grating section, and a controller that controls driving of the first movable body and of the second movable body, based on measurement information of the first and second encoder systems. In each of an exposure operation and a detection operation, the positional information of the second movable body is measured by the second encoder system.

Claims (109)

1. An exposure apparatus that exposes a substrate with an illumination light via a projection optical system, the apparatus comprising:

a frame member that supports the projection optical system;

a mark detection system arranged away from the projection optical system, that detects a mark of the substrate;

a mask stage system arranged above the projection optical system and having a first movable body to hold a mask and a first electromagnetic motor to drive the first movable body;

a first encoder system which has a plurality of first heads that each irradiate a first measurement beam to a first grating section having a reflection-type grating, and which measures positional information of the first movable body that is moved by the first electromagnetic motor, the first grating section being provided to one of the frame member and the first movable body and the plurality of first heads being provided to the other of the frame member and the first movable body;

a substrate stage system arranged under the projection optical system and having a second movable body to hold the substrate and a second electromagnetic motor to drive the second movable body;

a second encoder system which has a plurality of second heads that each irradiate a second measurement beam to a second grating section having a reflection-type grating, and which measures positional information of the second movable body that is moved by the second electromagnetic motor, the second grating section being arranged substantially parallel to a predetermined plane orthogonal to an optical axis of the projection optical system; and

a controller coupled to the mask stage system and the substrate stage system, that controls driving of the first movable body by the first electromagnetic motor and driving of the second movable body by the second electromagnetic motor, based on measurement information of the first encoder system and measurement information of the second encoder system, respectively, wherein

in each of an exposure operation of the substrate and a detection operation of the mark of the substrate, the positional information of the second movable body is measured by the second encoder system.

2. The exposure apparatus according to claim 1 , wherein

the controller controls the driving of the first movable body and the driving of the second movable body while correcting a measurement error of the second encoder system that occurs due to at least one of the second grating section and the second heads.

3. The exposure apparatus according to claim 2 , wherein

the controller corrects the measurement error that occurs due to at least one of a pitch or an arrangement of a grating formed in the second grating section and a deformation of the grating.

4. The exposure apparatus according to claim 2 , wherein

the controller corrects the measurement error that occurs due to at least one of a tilt and an optical characteristic of the second heads.

5. The exposure apparatus according to claim 1 , wherein

the substrate stage system has a plurality of second movable bodies including the second movable body, each of which holds a substrate, and

the second encoder system measures positional information of the plurality of second movable bodies.

6. The exposure apparatus according to claim 1 , wherein

the positional information of the second movable body is measured by three or four second heads that face the second grating section, of the plurality of second heads, and

by a movement of the second movable body, the second heads that face the second grating section are changed from one of the three second heads and the four second heads to the other of the three second heads and the four second heads.

7. The exposure apparatus according to claim 1 , wherein

the second grating section includes a plurality of scales each having a grating, and

the positional information of the second movable body is measured by second heads that face the plurality of scales, respectively, of the plurality of second heads.

8. The exposure apparatus according to claim 7 , 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, of the plurality of second heads, that face at least three of the four scales, respectively.

9. The exposure apparatus according to claim 8 , wherein

as the second movable body moves, a relationship between the second grating section and the second heads changes between a first state and a second state,

in the first state, the positional information of the second movable body is measured by the four second heads which face the four scales of the second grating section, respectively,

in the second state, the positional information of the second movable body is measured by only three of the second heads which face three of the four scales, respectively, such that none of the second heads faces a fourth one of the four scales, and

at least three scales of the four scales are always faced by three of the second heads at least during the exposure of the substrate.

10. The exposure apparatus according to claim 9 , wherein

the relationship between the second grating section and the second heads changes between the first state and the second state at least during an exposure operation of the substrate.

11. The exposure apparatus according to claim 10 , wherein

when the relationship changes from the first state to the second state, the fourth one of the four scales in the second state is determined based on a position of the second movable body.

12. The exposure apparatus according to claim 10 , wherein

when the relationship changes from the first state to the second state, the three second heads that respectively face the three scales in the second state are determined based on a position of the second movable body.

13. The exposure apparatus according to claim 10 , wherein

the driving of the second movable body is controlled based on the positional information measured by three of the second heads in each of the first state and the second state.

14. The exposure apparatus according to claim 10 , wherein

one of the second heads used in controlling the driving of the second movable body is changed to a different head of the second heads from the one head based on a position of the second movable body.

15. The exposure apparatus according to claim 14 , wherein

the change of second head is performed in a state in which both of the one second head and the different second head face the second grating section.

16. The exposure apparatus according to claim 15 , wherein

both of the one second head and the different second head face a same scale of the four scales in the state in which the change of second head is performed.

17. The exposure apparatus according to claim 15 , wherein

the change of second head is performed after the different second head faces the second grating section and before the one second head comes into a state not facing the second grating section.

18. The exposure apparatus according to claim 17 , wherein

the change of second head is performed at least during an exposure operation of the substrate.

19. A device manufacturing method comprising:

a lithography process of transferring a pattern onto a substrate using the exposure apparatus according to claim 1 .

20. A method of making an exposure apparatus that exposes a substrate with an illumination light via a projection optical system, the method comprising:

supporting the projection optical system with a frame member;

providing a mark detection system that is arranged away from the projection optical system and detects a mark of the substrate;

providing a mask stage system arranged above the projection optical system and having a first movable body to hold a mask and a first electromagnetic motor to drive the first movable body;

providing a first encoder system which has a plurality of first heads that each irradiate a first measurement beam to a first grating section having a reflection-type grating, and which measures positional information of the first movable body that is moved by the first electromagnetic motor, the first grating section being provided to one of the frame member and the first movable body and the plurality of first heads being provided to the other of the frame member and the first movable body;

providing a substrate stage system arranged under the projection optical system and having a second movable body to hold the substrate and a second electromagnetic motor to drive the second movable body;

providing a second encoder system which has a plurality of second heads that each irradiate a second measurement beam to a second grating section having a reflection-type grating, and which measures positional information of the second movable body that is moved by the second electromagnetic motor, the second grating section being arranged substantially parallel to a predetermined plane orthogonal to an optical axis of the projection optical system; and

coupling a controller to the mask stage system and the substrate stage system, the controller controlling driving of the first movable body by the first electromagnetic motor and driving of the second movable body by the second electromagnetic motor, based on measurement information of the first encoder system and measurement information of the second encoder system, respectively, wherein

in each of an exposure operation of the substrate and a detection operation of the mark of the substrate, the positional information of the second movable body is measured by the second encoder system.

21. An exposure method of exposing a substrate with an illumination light via a projection optical system, the method comprising:

measuring positional information of a first movable body that is arranged above the projection optical system and holds a mask, by a first encoder system having a plurality of first heads that each irradiate a first measurement beam to a first grating section having a reflection-type grating, the first grating section being provided to one of a frame member that supports the projection optical system and the first movable body and the plurality of first heads being provided to the other of the frame member and the first movable body;

measuring positional information of a second movable body that is arranged under the projection optical system and holds the substrate, by a second encoder system having a plurality of second heads that each irradiate a second measurement beam to a second grating section having a reflection-type grating, the second grating section being arranged substantially parallel to a predetermined plane orthogonal to an optical axis of the projection optical system;

detecting a mark of the substrate, by a mark detection system arranged away from the projection optical system; and

controlling a first electromagnetic motor that drives the first movable body based on measurement information of the first encoder system and also controlling a second electromagnetic motor that drives the second movable body based on measurement information of the second encoder system, in order to relatively move the mask and the substrate with respect to the illumination light, respectively, in an exposure operation of the substrate, wherein

in each of the exposure operation of the substrate and a detection operation of the mark of the substrate, the positional information of the second movable body is measured by the second encoder system.

22. The exposure method according to claim 21 , wherein

driving of the first movable body and driving of the second movable body are controlled while correcting a measurement error of the second encoder system that occurs due to at least one of the second grating section and the second heads.

23. The exposure method according to claim 22 , wherein

the measurement error that is corrected is due to at least one of a pitch or an arrangement of a grating formed in the second grating section and a deformation of the grating.

24. The exposure method according to claim 22 , wherein

the measurement error that is corrected is due to at least one of a tilt and an optical characteristic of the second heads.

25. The exposure method according to claim 21 , 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.

26. The exposure method according to claim 21 , wherein

the positional information of the second movable body is measured by three or four second heads that face the second grating section, of the plurality of second heads, and

by a movement of the second movable body, the second heads that face the second grating section are changed from one of the three second heads and the four second heads to the other of the three second heads and the four second heads.

27. The exposure method according to claim 21 , wherein

the second grating section includes a plurality of scales each having a grating, and

the positional information of the second movable body is measured by second heads that face the plurality of scales, respectively, of the plurality of second heads.

28. The exposure method according to claim 27 , 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, of the plurality of second heads, that face at least three of the four scales, respectively.

29. The exposure method according to claim 28 , wherein

as the second movable body moves, a relationship between the second grating section and the second heads changes between a first state and a second state,

in the first state, the positional information of the second movable body is measured by the four second heads which face the four scales of the second grating section, respectively,

in the second state, the positional information of the second movable body is measured by only three of the second heads which face three of the four scales, respectively, such that none of the second heads faces a fourth one of the four scales, and

at least three scales of the four scales are always faced by three of the second heads at least during the exposure of the substrate.

30. The exposure method according to claim 29 , wherein

the relationship between the second grating section and the second heads changes between the first state and the second state at least during an exposure operation of the substrate.

31. The exposure method according to claim 30 , wherein

when the relationship changes from the first state to the second state, the fourth one of the four scales in the second state is determined based on a position of the second movable body.

32. The exposure method according to claim 30 , wherein

when the relationship changes from the first state to the second state, the three second heads that respectively face the three scales in the second state are determined based on a position of the second movable body.

33. The exposure method according to claim 30 , wherein

the driving of the second movable body is controlled based on the positional information measured by three of the second heads in each of the first state and the second state.

34. The exposure method according to claim 30 , wherein

one of the second heads used in controlling the driving of the second movable body is changed to a different head of the second heads from the one head based on a position of the second movable body.

35. The exposure method according to claim 34 , wherein

the change of second head is performed in a state in which both of the one second head and the different second head face the second grating section.

36. The exposure method according to claim 35 , wherein

both of the one second head and the different second head face a same scale of the four scales in the state in which the change of second head is performed.

37. The exposure method according to claim 35 , wherein

the change of second head is performed after the different second head faces the second grating section and before the one second head comes into a state not facing the second grating section.

38. The exposure method according to claim 37 , wherein

the change of second head is performed at least during an exposure operation of the substrate.

39. A device manufacturing method comprising:

a lithography process of transferring a pattern onto a substrate using the exposure method according to claim 21 .

Priority Claims (3)
JP 2006-011506 · Jan 19, 2006 · national
JP 2006-044599 · Feb 21, 2006 · national
JP 2006-236878 · Aug 31, 2006 · national
Continuity (4)
Division 12900372 · Oct 7, 2010
Division 11655082 · Jan 19, 2007
Provisional Application 60851045 · Oct 12, 2006
Related Publication 20150002833A1 · Jan 1, 2015