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1
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0000196088
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R. Robertson, J. J. Fox, and A. E. Martin, Philos. Trans. R. Soc. London, Ser. A 232, 463 (1934).
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Philos. Trans. R. Soc. London, Ser. A
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Robertson, R.1
Fox, J.2
Martin, A.3
-
5
-
-
0347168048
-
-
Resistivities as low as 5 (Formula presented) have since been encountered
-
Physica (Amsterdam)J. F. H. Custers 20, 183 (1954).Resistivities as low as 5 (Formula presented) have since been encountered.
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(1954)
Physica (Amsterdam)
, vol.20
, pp. 183
-
-
Custers, J.1
-
10
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-
0003890994
-
-
J. R. Hardy, S. D. Smith, and W. Taylor, The Physics of Semiconductors (The Institute of Physics and Physical Society, London, 1962), p. 521.
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(1962)
The Physics of Semiconductors
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Hardy, J.1
Smith, S.2
Taylor, W.3
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15
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0016941664
-
-
E. C. Lightowlers and A. T. Collins, J. Phys. D 9, 951 (1976). On the basis of a critical examination of the literature and their own investigations these authors concluded that the “acceptor” in semiconducting diamond is substitutional boron.
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(1976)
J. Phys. D
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, pp. 951
-
-
Lightowlers, E.1
Collins, A.2
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17
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0031170535
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-
H. Kim, A. K. Ramdas, S. Rodriguez, and T. R. Anthony, Solid State Commun. 102, 861 (1997).
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Solid State Commun.
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Kim, H.1
Ramdas, A.2
Rodriguez, S.3
Anthony, T.4
-
18
-
-
4243340339
-
-
the figure caption for Fig. 22(b) the scattering configuration should read (Formula presented)
-
H. Kim, R. Vogelgesang, A. K. Ramdas, S. Rodriguez, M. Grimsditch, and T. R. Anthony, Phys. Rev. Lett. 79, 1706 (1997). In the figure caption for Fig. 22(b) the scattering configuration should read (Formula presented).
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(1997)
Phys. Rev. Lett.
, vol.79
, pp. 1706
-
-
Kim, H.1
Vogelgesang, R.2
Ramdas, A.3
Rodriguez, S.4
Grimsditch, M.5
Anthony, T.6
-
20
-
-
36149026177
-
-
The relation of the Luttinger parameters to others used in the literature are (Formula presented), and (Formula presented). We use the form of D as given in Ref. 13
-
J. M. Luttinger, Phys. Rev. 102, 1030 (1956). The relation of the Luttinger parameters to others used in the literature are (Formula presented), and (Formula presented). We use the form of D as given in Ref. 13.
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(1956)
Phys. Rev.
, vol.102
, pp. 1030
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-
Luttinger, J.1
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25
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85037885683
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N. Binggeli, A. Baldereschi, and A. Quattropani, in Shallow Impurities in Semiconductors 1988, edited by B. Monemar, IOP Conf. Proc. No. 95 (Institute of Physics and Physical Society, Bristol, England, 1989), p. 521.
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Shallow Impurities in Semiconductors 1988
, pp. 521
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Binggeli, N.1
Baldereschi, A.2
Quattropani, A.3
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27
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4243164664
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P. J. Dean, J. D. Cuthbert, D. G. Thomas, and R. T. Lynch, Phys. Rev. Lett. 18, 122 (1967).
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Phys. Rev. Lett.
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Dean, P.1
Cuthbert, J.2
Thomas, D.3
Lynch, R.4
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31
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4243240273
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The Physics of Semiconductors (The Institute of Physics and Physical Society, London, 1962), p. 276
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C. J. Rauch, Phys. Rev. Lett. 7, 83 (1961); The Physics of Semiconductors (The Institute of Physics and Physical Society, London, 1962), p. 276.
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Phys. Rev. Lett.
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Rauch, C.1
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35
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34047267696
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-
Using their calibration curve for neutral acceptor concentration, the boron concentration in our type IIb diamond samples is estimated to be (Formula presented) for D2, (Formula presented) for D1, (Formula presented) for D44 (a man-made diamond of natural composition), and (Formula presented) for D41 (Formula presented), boron-doped diamond)
-
See A. T. Collins and A. W. S. Williams, J. Phys. C 4, 1789 (1971). Using their calibration curve for neutral acceptor concentration, the boron concentration in our type IIb diamond samples is estimated to be (Formula presented) for D2, (Formula presented) for D1, (Formula presented) for D44 (a man-made diamond of natural composition), and (Formula presented) for D41 (Formula presented), boron-doped diamond).
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(1971)
J. Phys. C
, vol.4
, pp. 1789
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Collins, A.1
Williams, A.2
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36
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85037905305
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M. Cardona (private communication).
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Cardona, M.1
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37
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0006283599
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A. T. Collins, S. C. Lawson, G. Davies, and H. Kanda, Phys. Rev. Lett. 65, 891 (1990).
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Phys. Rev. Lett.
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Collins, A.1
Lawson, S.2
Davies, G.3
Kanda, H.4
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39
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-
33846482863
-
-
Following T. C. Damen, S. P. S. Porto, and B. Tell, Phys. Rev. 142, 570 (1966), we denote the scattering geometry by (Formula presented), where (Formula presented) is the incident direction, (Formula presented) the incident polarization, (Formula presented) the scattered polarization, and (Formula presented) the scattered direction.
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(1966)
Phys. Rev.
, vol.142
, pp. 570
-
-
Damen, T.1
Porto, S.2
Tell, B.3
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40
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0004024194
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-
MIT Press, Cambridge, MA
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G. F. Koster, J. O. Dimmock, R. G. Wheeler, and H. Statz, Properties of the Thirty-two Point Groups (MIT Press, Cambridge, MA, 1963).
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(1963)
Properties of the Thirty-two Point Groups
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Koster, G.1
Dimmock, J.2
Wheeler, R.3
Statz, H.4
-
44
-
-
0005521269
-
-
Based on the discussion in Ref. 52we use (Formula presented) and (Formula presented) for diamond
-
W. van Haeringen and H. -G. Junginger, Solid State Commun. 7, 1135 (1969). Based on the discussion in Ref. 52, we use (Formula presented) and (Formula presented) for diamond.
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(1969)
Solid State Commun.
, vol.7
, pp. 1135
-
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van Haeringen, W.1
-G. Junginger, H.2
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46
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84986851268
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M. Grimsditch, M. Cardona, J. M. Calleja, and F. Meseguer, J. Raman Spectrosc. 10, 77 (1981).
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(1981)
J. Raman Spectrosc.
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, pp. 77
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Grimsditch, M.1
Cardona, M.2
Calleja, J.3
Meseguer, F.4
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47
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0001274248
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R. Vogelgesang, A. K. Ramdas, S. Rodriguez, M. Grimsditch, and T. R. Anthony, Phys. Rev. B 54, 3989 (1996).
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Phys. Rev. B
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, pp. 3989
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Vogelgesang, R.1
Ramdas, A.2
Rodriguez, S.3
Grimsditch, M.4
Anthony, T.5
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48
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25944478458
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See, for example, K. C. Hass, M. A. Tamor, T. R. Anthony, and W. F. Banholzer, Phys. Rev. B 45, 7171 (1992).
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Phys. Rev. B
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Hass, K.1
Tamor, M.2
Anthony, T.3
Banholzer, W.4
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55
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0005585559
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J. F. Angress, S. D. Smith, and K. F. Renk, in Lattice Dynamics, edited by R. F. Wallis (Pergamon, London, UK, 1965).
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Lattice Dynamics
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Angress, J.1
Smith, S.2
Renk, K.3
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56
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85037886244
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G. Davies, in Chemistry and Physics of Carbon, edited by P. L. Walker, Jr. and P. A. Thrower (Marcel Dekker, Inc., New York, 1977), Vol. 13, p. 1. See also J. H. N. Loubser and J. A. van Wyk quoted by C. D. Clark et al., in The Properties of Natural and Synthetic Diamond, edited by J. E. Field (Academic, London, 1992), p. 35.
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Chemistry and Physics of Carbon
, vol.13
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Davies, G.1
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57
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0000651885
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A. J. Mayur, M. Dean Sciacca, M. K. Udo, A. K. Ramdas, K. Itoh, J. Wolk, and E. E. Haller, Phys. Rev. B 49, 16 293 (1994).
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Phys. Rev. B
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Mayur, A.1
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Ramdas, A.4
Itoh, K.5
Wolk, J.6
Haller, E.7
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58
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0010778453
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I. Kiflawi, A. Mainwood, H. Kanda, and D. Fisher, Phys. Rev. B 54, 16 719 (1996).
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Phys. Rev. B
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Kiflawi, I.1
Mainwood, A.2
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Fisher, D.4
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S. J. Sharp, A. T. Collins, G. Davies, and G. S. Joyce, J. Phys.: Condens. Matter 9, L451 (1997).
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J. Phys.: Condens. Matter
, vol.9
, pp. L451
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Sharp, S.1
Collins, A.2
Davies, G.3
Joyce, G.4
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64
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0031340095
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H. Sternschulte, S. Wahl, K. Thonke, R. Sauer, T. Ruf, M. Cardona, and T. R. Anthony, Mater. Sci. Forum 258-263, 757 (1997).
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(1997)
Mater. Sci. Forum
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, pp. 757
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Sternschulte, H.1
Wahl, S.2
Thonke, K.3
Sauer, R.4
Ruf, T.5
Cardona, M.6
Anthony, T.7
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65
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0031996131
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T. Ruf, M. Cardona, H. Sternschulte, S. Wahl, K. Thonke, R. Sauer, P. Pavone, and T. R. Anthony, Solid State Commun. 105, 311 (1998).
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Solid State Commun.
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Ruf, T.1
Cardona, M.2
Sternschulte, H.3
Wahl, S.4
Thonke, K.5
Sauer, R.6
Pavone, P.7
Anthony, T.8
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