IP Library › Granted Patent US 9,859,101
Granted Patent B2
US 9,859,101 · App. 15/591,197 · Granted Jan 2, 2018

Plasma processing apparatus and plasma processing method

Inventor: Shinji Kubota (Miyagi, JP)
Assignee: TOKYO ELECTRON LIMITED
H01J37/32165H01J37/32146H01J37/32816
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Quick Facts
Patent No.
US 9,859,101
App. No.
15/591,197
Granted
Jan 2, 2018
Kind
B2
Abstract

A plasma processing apparatus includes a processing chamber, a carrier wave group generation unit and a plasma generation unit. The carrier wave group generation unit is configured to generate a carrier wave group including a plurality of carrier waves having different frequencies in a frequency domain. The carrier wave group is represented by an amplitude waveform in which a first peak and a second peak of which absolute value is smaller than an absolute value of the first peak alternately appear in a time domain. The plasma generation unit is configured to generate a plasma in the processing chamber by using the carrier wave group.

Claims (28)

1. A plasma processing apparatus comprising:

a processing chamber;

a carrier wave group generation unit configured to generate a carrier wave group including a plurality of carrier waves having different frequencies in a frequency domain, the carrier wave group being represented by an amplitude waveform in which a first peak and a second peak of which absolute value is smaller than an absolute value of the first peak alternately appear in a time domain; and

a plasma generation unit configured to generate a plasma in the processing chamber by using the carrier wave group.

2. The plasma processing apparatus of claim 1 , wherein a amplitude difference between the first peak and the second peak in the amplitude waveform varies depending on a ratio of an amplitude value of a carrier wave, among the carrier waves, corresponding to a central frequency of the carrier wave group to an amplitude value of a carrier wave, among the carrier waves, other than the carrier wave corresponding to the central frequency of the carrier wave group.

3. The plasma processing apparatus of claim 1 , wherein a ratio of an appearance time of the first peak to a sum of the appearance time of the first peak and an appearance time of the second peak in the amplitude waveform varies depending on the number of the carrier waves.

4. The plasma processing apparatus of claim 1 , wherein a time interval between two adjacent first peaks in the amplitude waveform varies depending on a frequency interval of the carrier waves.

5. The plasma processing apparatus of claim 1 , wherein the carrier wave group generation unit includes:

a waveform data generation unit configured to generate a waveform data;

a quantization unit configured to quantize the waveform data;

an inverse Fourier transformation unit configured to separate I data and Q data of the waveform data by inverse-Fourier-transforming the quantized waveform data; and

a modulator configured to generate the carrier wave group by modulating reference carrier waves, which have different phases by 90°, by using the I data and Q data of the waveform data, respectively.

6. The plasma processing apparatus of claim 5 , wherein the waveform data generation unit generates, as the waveform data, a first waveform data during a first time period and a second waveform data different from the first waveform data during a second time period after the first time period, and

the modulator generates the carrier wave group based on the first waveform data during the first time period and generates the carrier wave group based on the second waveform data during the second time period.

7. The plasma processing apparatus of claim 5 , wherein the waveform data generation unit generates, as the waveform data, a synthesized waveform data obtained by combining a first waveform data and a second waveform data different from the first waveform data, and

the modulator generates the carrier wave group, based on the synthesized waveform data, which is represented by the amplitude waveform in which the first peak and the second peak alternately appear and a third peak appears at an arbitrary time in the time domain.

8. The plasma processing apparatus of claim 1 , wherein the carrier wave group generation unit includes:

a carrier wave generation unit configured to generate carrier waves having different frequencies at a predetermined frequency interval;

a shift unit configured to sequentially shift phases of the carrier waves having different frequencies which are generated by the carrier wave generation unit by a predetermined cycle; and

a combining unit configured to generate the carrier wave group by combining the carrier waves having different frequencies and the phases shifted by the shift unit.

9. The plasma processing apparatus of claim 8 , wherein the shift unit shifts the phases of the carrier waves having different frequencies by 90° with respect to a carrier wave adjacent to a lower frequency.

10. The plasma processing apparatus of claim 8 , wherein the carrier wave group generation unit further includes:

an amplification unit configured to amplify the carrier waves having different frequencies and the phases shifted by the shift unit,

wherein the shift unit shifts the phases of the carrier waves having different frequencies such that phases after the amplification become a desired cycle by converting changes in the phases by the amplification unit, and

wherein the combining unit generates the carrier wave group by combining the carrier waves having different frequencies which have been amplified by the amplification unit.

11. A plasma processing method comprising:

generating a carrier wave group including a plurality of carrier waves having different frequencies in a frequency domain, the carrier wave group being represented by an amplitude waveform in which a first peak and a second peak of which absolute value is smaller than an absolute value of the first peak alternately appear in a time domain; and

generating a plasma in a processing chamber by using the carrier wave group.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2017
From: KUBOTA, SHINJI
To: TOKYO ELECTRON LIMITED
Reel/Frame 042319/0540 →
Priority Claims (2)
JP 2016-094340 · May 10, 2016 · national
JP 2017-092199 · May 8, 2017 · national
Continuity (1)
Related Publication 20170330730A1 · Nov 16, 2017