2015
DOI: 10.1017/s1431927615015378
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Determination of Mean Inner Potential and Inelastic Mean Free Path of ZnTe Using Off-Axis Electron Holography and Dynamical Effects Affecting Phase Determination

Abstract: The mean inner potential (MIP) and inelastic mean free path (IMFP) of undoped ZnTe are determined using a combination of off-axis electron holography and convergent beam electron diffraction. The ZnTe MIP is measured to be 13.7±0.6 V, agreeing with previously reported simulations, and the IMFP at 200 keV is determined to be 46±2 nm for a collection angle of 0.75 mrad. Dynamical effects affecting holographic phase imaging as a function of incident beam direction for several common semiconductors are systematica… Show more

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Cited by 10 publications
(11 citation statements)
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“…Another established methodology 5 involves (i) utilizing Doyle-Turner atomic scattering factors; (ii) estimating an upper limit by assuming that the lattice is composed of distinct, non-bonded, neutral atoms (the "isolated atom" or "non-binding" approximation); and (iii) estimating a lower limit by applying an empirically derived correction factor (the "Ross-Stobbs" approximation). Applying this methodology to CdTe, in the same fashion as for ZnTe, 13 yields an upper value of 14.2 V and a lower value of 10.3 V. The experimental value certainly falls within this range, but it is clear that the experimental distribution is centered very close to the non-binding value. This lends weight to the assumption that the non-binding approximation yields accurate values for covalently bonded materials.…”
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confidence: 85%
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“…Another established methodology 5 involves (i) utilizing Doyle-Turner atomic scattering factors; (ii) estimating an upper limit by assuming that the lattice is composed of distinct, non-bonded, neutral atoms (the "isolated atom" or "non-binding" approximation); and (iii) estimating a lower limit by applying an empirically derived correction factor (the "Ross-Stobbs" approximation). Applying this methodology to CdTe, in the same fashion as for ZnTe, 13 yields an upper value of 14.2 V and a lower value of 10.3 V. The experimental value certainly falls within this range, but it is clear that the experimental distribution is centered very close to the non-binding value. This lends weight to the assumption that the non-binding approximation yields accurate values for covalently bonded materials.…”
mentioning
confidence: 85%
“…11,12 Additionally, Gan et al recently measured the mean free path of ZnTe (a rather similar material to CdTe) to be 46 nm (Ref. 13) via holography amplitude measurements. Therefore, to place the CdTe value in a wider context, it is important to clarify the definition of mean free path, and the electron scattering processes that underpin it.…”
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confidence: 99%
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