Vacancy enhanced boron activation during room temperature implantation and low temperature annealing
- Jian Yue Jin(corresponding author),
- Irene Rusakova,
- Qinmian Li,
- Jiarui Liu,
- Wei Kan Chu
- University of Houston,
- Applied Materials Incorporated,
Related Event
Title
Event type
OtherDate
04/24/2000 - 04/27/2000Location
Abstract
Low temperature annealing combined with pre-damage (or pre-amorphization) implantation is a very promising method to overcome the activation barrier in ultra-shallow junction formation. We have made a 32 nm p+/n junction with sheet resistance of 290 Ω/sq. using 20 keV 4×1014 at./cm2 Si followed by 2 keV 1×1015 at./cm2 B implantation and 10 minutes 550°C annealing. This paper studies the boron activation mechanism during low temperature annealing. The result shows that placing B profile in the vacancy-rich region has much better boron activation than placing B profile in interstitial-rich region or without pre-damage. It also shows that a significant portion of boron is in substitutional positions before annealing. The amount of substitutional boron is correlated to the amount of vacancies (damage) by the pre-damage Si implantation. The result supports our speculation that vacancy enhances boron activation.
Publication Information
Output type
Original language
English (US)Pages from-to (Number of pages)
Pages B5.6.1-B5.6.6Journal (Volume, Issue Number)
Materials Research Society Symposium - Proceedings (Volume 610)Publication milestones
- Published - 2000
Publication status
ISSN
0272-9172Publication IDs
- Scopus: 0034439071
- Scopus: 85009843336
