The gap level of bond-centred muonium in diamond
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-540-85320-6_24.pdf
Reference13 articles.
1. Schneider, J.W., Kieft, R.F., Chow, K.H., Johnson, S., Sonier, J., Estle, T.L., Hitti, B., Lichti, R.L., Connell, S.H., Sellschop, J.P.F., Smallman, C.G., Anthony, T.R., Banholzer, W.F.: Bondcentered muonium in diamond: resolved nuclear hyperfine structure. Phys. Rev. Lett. 71(4), 557–560 (1993)
2. Patterson, B.D., Hintermann, A., Kündig, W., Meier, P.F., Wadner, F., Graf, H., Recknagel, E., Weidinger, A., Wicher, Th.: Anomalous muonium in silicon. Phys. Rev. Lett. 40(20), 1347–1350 (1978)
3. Holzschuh, E., Graf, H., Recknagel, E., Weidinger, A., Wichert, Th., Meier, P.F.: Muonium states in germanium. Phys. Rev. B 20(11), 4391–4396 (1979)
4. Machi, I.Z., Connell, S.H., Baker, M., Sellschop, J.P.F., Bharuth-Ram, K., Fischer, C.G., Nilen, R.W., Cox, S.F.J., Butler, J.E.: A new muonium trap in nitrogen-rich diamond discovered by μSR. Physica B 289–290, 507–510 (2000)
5. Goss, J.P.: Theory of hydrogen in diamond. J. Phys. Condense Matter 15, R551–R580 (2003)
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