Preview

Proceedings of the National Academy of Sciences of Belarus. Physics and Mathematics Series

Advanced search

INJECTION ANNEALING OF THE SELF DI-INTERSTITIAL – OXYGEN COMPLEX IN p-TYPE SILICON

https://doi.org/10.29235/1561-2430-2018-54-2-220-228

Abstract

With the use of deep level transient spectroscopy (DLTS) the effect of injection of minority charge carriers (electrons) on an annealing rate of self di-interstitial – oxygen (I2O) complex in silicon has been studied. The complex has been formed by irradiation of epitaxial boron-doped n+–p diode structures with alpha-particles at room temperature. It has been shown that the disappearance of this complex at room temperature begins at a direct current density of ~1.5 A/cm2. This characteristic current density has been found for 10 W·cm p-type silicon when the total radiation defect density was less than 15 % of the initial boron concentration, a divalent hole trap with energy levels of Ev + 0.43 eV and Ev + 0.54 eV has been found to appear as a result of recombination-enhanced annealing of the I2O. When the I2O complex is annealed thermally, the concurrent appearance of an electron trap with an energy level of Ec – 0.35 eV has been observed. It has been shown that the divalent hole trap represents a metastable configuration (BH-configuration) of the bistable defect, whereas the electron trap is stab le in the p-Si configuration (ME-configuration). From the comparison of DLTS signals related to different defect configurations it is found that the ME-configuration of this bistable defect can be characterized as a center with negative correlation energy. It has been shown that the injection-stimulated processes make it very difficult to obtain reliable data on the formation kinetics of the bistable defect in the BH-configuration when studying the thermal annealing of the I2O complex.

About the Authors

L. F. Makarenko
Belarusian State University.
Belarus

Leonid F. Makarenko – Ph. D. (Physics and Mathematics), Assistant Professor.

4, Nezavisimosti Ave., 220030, Minsk.



S. B. Lastovskii
SSPA “Scientific-Practical Materials Research Centre of NAS of Belarus”/
Belarus

Stanislav B. Lastovskii – Ph. D. (Physics and Mathematics), Head of the Laboratory.

19, P. Brovka Str., 220072, Minsk.



E. Gaubas
Vilnius University.
Lithuania

Gaubas Eugenijus – Dr. Sc. (Habil. Dr.), Professor, Institute of Photonics and Nanotechnology, Faculty of Physics.

3, Sauletekio Ave., 10257, Vilnius.



Je. A. Pavlov
Vilnius University.
Lithuania

Jevgenij A. Pavlov – Ph. D. (Physics), Researcher, Institute of Photonics and Nanotechnology.

3, Sauletekio Ave., 10257, Vilniu.



M. Moll
CERN
Switzerland

Michael Moll – Ph. D. (Physics), Project Leader, EP Department.

CERN EP-DT, CH-1211 Geneva 23.



H. S. Yakushevich
SSPA “Scientific-Practical Materials Research Centre of NAS of Belarus” .
Belarus

Hanna S. Yakushevich – Junior Researcher.

19, P. Brovka Str., 220072, Minsk.



L. I. Murin
SSPA “Scientific-Practical Materials Research Centre of NAS of Belarus” .
Belarus

Leonid I. Murin – Ph. D. (Physics and Mathematics), Leading Researcher.

19, P. Brovka Str., 220072, Minsk.



References

1. Gregory B. L. Injection-stimulated vacancy reordering in p-type silicon at 76°K. Journal of Applied Physics, 1965, vol. 36, no. 12, pp. 3765–3769. https://doi.org/10.1063/1.1713944

2. Troxell J. R., Watkins G. D. Interstitial boron in silicon: A negative-U system. Physical Review B, 1980, vol. 22, no. 2, pp. 921–931. https://doi.org/10.1103/physrevb.22.921

3. Troxell J. R., Chatterjee A. P., Watkins G. D., Kimerling L. C. Recombination-enhanced migration of interstitial aluminum in silicon. Physical Review B, 1979, vol. 19, no. 10, pp. 5336–5348. https://doi.org/10.1103/physrevb.19.5336

4. Makarenko L. F., Lastovskii S. B., Yakushevich H. S., Moll M., Pintilie I. Effect of electron injection on defect reactions in irradiated silicon containing boron, carbon, and oxygen. Journal of Applied Physics, 2018, vol. 123, no. 16, pp. 161576 (1–7). https://doi.org/10.1063/1.5010965

5. Makarenko L. F., Lastovskii S. B., Yakushevich H. S., Moll M., Pintilie I. Injection annealing of radiation-induced interstitial defects in boron doped silicon crystals. Vestsi Natsyianal'nai akademii navuk Belarusi. Seryia fizika-matematychnykh navuk = Proceedings of the National Academy of Sciences of Belarus, Physics and Mathematics series, 2017, no. 3, pp. 108–117 (in Russian).

6. Makarenko L. F., Lastovskii S. B., Yakushevich H. S., Moll M., Pintilie I. Forward current enhanced elimination of the radiation induced boron-oxygen complex in silicon n+–p diodes. Physica Status Solidi A, 2014, vol. 211, no. 11, pp. 2558–2562. https://doi.org/10.1002/pssa.201431315

7. Hermansson J., Murin L. I., Hallberg T., Markevich V. P., Lindström J. L., Kleverman M., Svensson B. G. Complexes of the self-interstitial with oxygen in irradiated silicon: a new assignment of the 936 cm−1 band. Physica B: Condensed Matter, 2001, vol. 302–303, pp. 188–192. https://doi.org/10.1016/s0921-4526(01)00426-4

8. Davies G., Hayama S., Murin L., Krause-Rehberg R., Bondarenko V., Sengupta A., Davia C., Karpenko A. Radiation damage in silicon exposed to high-energy protons. Physical Review B, 2006, vol. 73, no. 16, pp. 165202 (1–10). https://doi.org/10.1103/physrevb.73.165202

9. Markevich V. P., Peaker A. R., Hamilton B., Gusakov V. E., Lastovskii S. B., Murin L. I., Ganagona N., Monakhov E. V., Svensson B. G. Structure, electronic properties and annealing behavior of di-interstitial-oxygen center in silicon. Solid State Phenomena, 2015, vol. 242, pp. 290–295. https://doi.org/10.4028/www.scientific.net/ssp.242.290

10. Lastovskii S. B., Markevich V. P., Yakushevich H. S., Murin L. I., Krylov V. P. Radiation-induced bistable centers with deep levels in silicon n+–p structures. Semiconductors, 2016, vol. 50, no. 6, pp. 751–755. https://doi.org/10.1134/s1063782616060130

11. Makarenko L. F., Moll M., Korshunov F. P., Lastovski S. B. Reactions of interstitial carbon with impurities in silicon particle detectors. Journal of Applied Physics, 2007, vol. 101, no. 11, pp. 113537 (1–6). https://doi.org/10.1063/1.2745328

12. Kimerling L. C., Asom M. T., Benton J. L., Drevinsky P. J., Caefer C. E. Interstitial defect reactions in silicon. Materials Science Forum, 1989, vol. 38–41, pp. 141–150. https://doi.org/10.4028/www.scientific.net/msf.38-41.141

13. New HERA-DLTS system. PhysTech. Available at: http://phystech.eu/products/dlts/dlhera.htm (accessed 27 February 2018).

14. Markevich V. P., Peaker A. R., Hamilton B., Lastovskii S. B., Murin L. I., Coutinho J., Torres V. J., Dobaczewski L., Svensson B. G. Structure and electronic properties of trivacancy and trivacancy-oxygen complexes in silicon. Physica Status Solidi A, 2011, vol. 208, no. 3, pp. 568–571. https://doi.org/10.1002/pssa.201000265

15. Makarenko L. F., Korshunov F. P., Lastovskii S. B., Murin L. I., Moll M. DLTS studies of carbon related complexes in irradiated n- and p-silicon. Solid State Phenomena, 2010, vol. 156–158, pp. 155–160. https://doi.org/10.4028/www.scientific.net/ssp.156-158.155

16. Makarenko L. F., Korshunov F. P., Lastovskii S. B., Murin L. I., Moll M., Pintilie I. Formation and annealing of metastable (interstitial oxygen)-(interstitial carbon) complexes in n- and p-type silicon. Semiconductors, 2014, vol. 48, no. 11, pp.1456–1462. https://doi.org/10.1134/s1063782614110141

17. Fleming R. M., Seager C. H., Lang D. V., Campbell J. M. Transformation kinetics of an intrinsic bistable defect in damaged silicon. Journal of Applied Physics, 2012, vol. 111, no. 2, pp. 023715 (1–7). https://doi.org/10.1063/1.3678581

18. Makarenko L. F., Lastovskii S. B., Korshunov F. P., Moll M., Pintilie I., Abrosimov N. V. Formation and annealing of boron-oxygen defects in irradiated silicon and silicon-germanium n+–p structures. AIP Conference Proceedings, 2014, vol. 1583, no. 1, pp. 123–126. https://doi.org/10.1063/1.4865618

19. Yakushevich H. S., Lastovskii S. B., Makarenko L. F., Murin L. I. Bistable centres with deep levels in silicon n+–p-structures irradiated with alpha-particles. Actual'nyye problemy fiziki tverdogo tela (FTT – 2016) : sbornik dokladov Mezhdunarodnoy konferentsii, Minsk, 22–25 noyabrya 2016. T. 2 [Actual Problems of Solid State Physics (SSP – 2016) : Proceedings of the International Scientific Conference, Minsk, 22 – 25 November 2016. Vol. 2]. Minsk, Kovcheg Publ., 2016, pp. 105–107 (in Russian).

20. Gusakov V. E., Lastovskii S. B., Murin L. I., Tolkacheva E. A., Khirunenko L. I., Sosnin M. G., Duvanskii A. V., Markevich V. P., Halsall M. P., Peaker A. R., Kolevatov I. The di-interstitial in silicon: Electronic properties and interactions with oxygen and carbon impurity atoms. Physica Status Solidi A, 2017, vol. 214, no. 7, pp. 1700261 (1–6). https://doi.org/10.1002/pssa.201700261


Review

Views: 1687


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1561-2430 (Print)
ISSN 2524-2415 (Online)