Spot heating by moving a beam with horizontal rotary motion
Embodiments of the present disclosure generally relate to apparatus and methods for semiconductor processing, more particularly, to a thermal process chamber. In one or more embodiments, a process chamber comprises a first window, a second window, a substrate support disposed between the first window and the second window, and a motorized rotatable radiant spot heating source disposed over the first window and configured to provide radiant energy through the first window.
1. A process chamber, comprising:
a first window;
a second window;
a substrate support disposed between the first window and the second window;
a cooling plate;
a rotary stage disposed in a first plane and on the cooling plate; and
a motorized rotatable radiant spot heating source disposed over the first window and configured to provide radiant energy through the first window, such that the motorized rotatable radiant spot heating source is mounted to the rotary stage and positioned at an acute angle with respect to the first plane, wherein the rotary stage is rotatable to rotate the motorized rotatable radiant spot heating source.
2. The process chamber of claim 1 , wherein the cooling plate comprises one or more channels formed therein.
3. The process chamber of claim 2 , wherein the one or more channels comprise aluminum.
4. The process chamber of claim 1 , wherein the rotary stage is disposed in direct contact with the cooling plate.
5. The process chamber of claim 1 , further comprising a chamber lid, wherein the cooling plate is disposed on the chamber lid.
6. The process chamber of claim 1 , wherein the motorized rotatable radiant spot heating source comprises:
a collimator holder; and
a collimator disposed in the collimator holder.
7. A process chamber, comprising:
a first window;
a second window;
a substrate support disposed between the first window and the second window;
a rotary stage disposed in a first plane;
a motorized rotatable radiant spot heating source disposed over the first window and configured to provide radiant energy through the first window, such that the motorized rotatable radiant spot heating source is mounted to the rotary stage and positioned at an acute angle with respect to the first plane, wherein the rotary stage is rotatable to rotate the motorized rotatable radiant spot heating source; and
a rotary plate disposed on the rotary stage, the rotary plate rotatable about a vertical axis.
8. A spot heating source assembly, comprising:
a collimator holder;
a cooling plate; and
a rotary stage disposed at a first plane, wherein the collimator holder is mounted to the rotary stage at an acute angle with respect to the first plane and the rotary stage is in direct contact with the cooling plate, the cooling plate mounted in a second plane parallel to the first plane.
9. The spot heating source assembly of claim 8 , further comprising:
a collimator disposed on the collimator holder; and
a laser coupled to the collimator.
10. The spot heating source assembly of claim 8 , wherein the collimator holder comprises at least one lens mounted therein.
11. The spot heating source assembly of claim 10 , wherein the at least one lens is coated in an anti-reflective coating.
12. The spot heating source assembly of claim 8 , wherein the collimator holder comprises a plurality of lenses mounted therein.
13. The spot heating source assembly of claim 12 , wherein the rotary stage comprises a plurality of vacuum-tight seals.