IP Library › Granted Patent US 8,975,190
Granted Patent B2
US 8,975,190 · App. 14/036,240 · Granted Mar 10, 2015

Plasma processing method

Inventor: Ryoichi Yoshida (Miyagi, JP)
Assignee: Tokyo Electron Limited
H01J37/32009H01J37/32091H01J37/32155
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Quick Facts
Patent No.
US 8,975,190
App. No.
14/036,240
Granted
Mar 10, 2015
Kind
B2
Abstract

A plasma processing method includes a surface improving step of improving a surface of the photoresist film by performing plasma processing using a hydrogen-containing gas as a processing gas and an etching step of etching the SiON film by performing plasma processing using a processing gas including a gas containing a CHF-based gas and a chlorine-containing gas while using as a mask the photoresist film having the improved surface.

Claims (22)

1. A plasma processing method for performing plasma etching on a SiON film while using as a mask a photoresist film having a predetermined pattern, the method comprising:

a surface improving step of improving a surface of the photoresist film by performing plasma processing using a hydrogen-containing gas as a processing gas; and

an etching step of etching the SiON film by performing plasma processing using a processing gas including a gas containing a CHF-based gas and a chlorine-containing gas while using as a mask the photoresist film having the improved surface,

wherein a high frequency power amount for plasma generation in the etching step is greater than a high frequency amount for plasma generation in the surface improving step.

2. The plasma processing method of claim 1 , wherein the surface improving step and the etching step are repeated at least twice, and wherein an execution time of a first execution of the surface improving step is longer than an execution time of a second execution of the surface improving step.

3. The plasma processing method of claim 1 , wherein the chlorine-containing gas contains at least one of Cl 2 gas, BCl 3 gas and CCl 4 gas.

4. The plasma processing method of claim 1 , wherein the hydrogen-containing gas is a gaseous mixture of H 2 gas, N 2 gas and CH 4 gas.

5. The plasma processing method of claim 1 , wherein the CHF-based gas is any one of CH 2 F 2 gas, CH 3 F gas, and CHF 3 gas.

6. The plasma processing method of claim 5 , wherein the gas containing the CHF-based gas and the chlorine-containing gas further contains a CF-based gas.

7. The plasma processing method of claim 6 , wherein the CF-based gas contains at least one of CF 4 gas and C 4 F 8 gas.

8. The plasma processing method of claim 1 , wherein the processing gas including the gas containing the CHF-based gas and the chlorine-containing gas consists essentially of CHF 3 gas and Cl 2 gas.

9. The plasma processing method of claim 1 , wherein the plasma processing method is performed by using a plasma processing apparatus comprising an upper electrode and a lower electrode, and wherein a DC voltage is applied to the upper electrode in the surface improving step.

10. The plasma processing method of claim 9 , wherein the hydrogen-containing gas comprises Ar gas, and wherein the surface improving step comprises a first surface improving step performed without applying the DC voltage to the upper electrode and a second surface improving step performed by applying the DC voltage to the upper electrode.

11. A plasma processing method for performing plasma etching on an underlying film while using as a mask a photoresist film formed in a predetermined pattern on the underlying film, the method comprising:

a first step of improving a surface of the photoresist film by performing plasma processing using a hydrogen-containing gas as a processing gas; and

a second step of etching the underlying film by performing plasma processing using a processing gas including a gas containing a CHF-based gas and a chlorine-containing gas while using as a mask the photoresist film having the improved surface,

wherein a high frequency power amount in the plasma processing of the second step is greater than a high frequency power amount in the plasma processing of the first step.

12. The plasma processing method of claim 11 , wherein the first and the second step are repeated at least twice, and wherein an execution time of a first execution of the first step is longer than an execution time of a second execution of the first step.

13. The plasma processing method of claim 11 , wherein the hydrogen-containing gas is a gaseous mixture of H 2 gas, N 2 gas and CH 4 gas.

14. The plasma processing method of claim 11 , wherein the processing gas including the gas containing the CHF-based gas and the chlorine-containing gas consists essentially of CHF 3 gas and Cl 2 gas.

15. The plasma processing method of claim 11 , wherein the plasma processing method is performed by using a plasma processing apparatus comprising an upper electrode and a lower electrode, and wherein a DC voltage is applied to the upper electrode in the first step.

16. The plasma processing method of claim 15 , wherein the hydrogen-containing gas comprises Ar gas, and wherein the first step comprises a first surface improving step performed without applying the DC voltage to the upper electrode and a second surface improving step performed by applying the DC voltage to the upper electrode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2013
From: YOSHIDA, RYOICHI
To: TOKYO ELECTRON LIMITED
Reel/Frame 031275/0592 →
Priority Claims (2)
JP 2012-211371 · Sep 25, 2012 · national
JP 2013-196824 · Sep 24, 2013 · national
Continuity (2)
Provisional Application 61708766 · Oct 2, 2012
Related Publication 20140083975A1 · Mar 27, 2014