

@article{Snead:JNM:2007,
  author =        {Lance L. Snead and Takashi Nozawa and Yutai Katoh and
                   Thak-Sang Byun and Sosuke Kondo and David A. Petti},
  journal =       {J. Nucl. Mater.},
  note =          {Nuclear Fuels and Structural Materials 1},
  number =        {1},
  pages =         {329--377},
  title =         {Handbook of SiC properties for fuel performance
                   modeling},
  volume =        {371},
  year =          {2007},
  abstract =      {The SiC layer integrity in the TRISO-coated
                   gas-reactor fuel particle is critical to the
                   performance, allowed burn-up, and hence intrinsic
                   efficiency of high temperature gas cooled reactors.
                   While there has been significant developmental work
                   on manufacturing the fuel particles, detailed
                   understanding of the effects of the complex
                   in-service stress state combined with realistic
                   materials property data under irradiation on fuel
                   particle survival is not adequately understood. This
                   particularly frustrates the modeling efforts that
                   seek to improve fuel performance through basic
                   understanding. In this work a compilation of
                   non-irradiated and irradiated properties of SiC are
                   provided and reviewed and analyzed in terms of
                   application to TRISO fuels. In addition to a
                   compilation and review of literature data, new data
                   generated to fill holes in the existing database is
                   included, specifically in the high-temperature
                   irradiation regime. Another critical piece of
                   information, the strength of the SiC/Pyrolytic carbon
                   interface, was measured and is included, along with a
                   formalism for its analysis. Finally, recommended
                   empirical treatments of the data are suggested.},
  doiurl =        {https://doi.org/10.1016/j.jnucmat.2007.05.016},
  issn =          {0022-3115},
  url =           {https://www.sciencedirect.com/science/article/pii/
                  S0022311507007623},
}

@article{Ivekovic:JECS:2013,
  author =        {Alja{\v z} Ivekovi{\'c} and Sa{\v s}a Novak and
                   Goran Dra{\v z}i{\'c} and Darina Blagoeva and
                   Sehila Gonzalez {de Vicente}},
  journal =       {J. Eur. Ceram. Soc.},
  number =        {10},
  pages =         {1577-1589},
  title =         {Current status and prospects of SiCf/SiC for fusion
                   structural applications},
  volume =        {33},
  year =          {2013},
  abstract =      {This article provides an overview of the main
                   characteristics of SiCf/SiC that suggest the use of
                   this SiC-based composite as a structural material for
                   the blanket in future fusion reactors, a brief
                   description of its structure and the role of its main
                   constituents. The relevant fabrication processes and
                   their ability to produce a material with the required
                   properties are also summarised. The main part of the
                   paper is devoted to an assessment of the
                   state-of-the-art materials, and the basic
                   requirements for the target material are discussed in
                   terms of the achieved properties. The key issues and
                   areas of uncertainty are described and suggestions
                   for overcoming them are presented.},
  doiurl =        {https://doi.org/10.1016/j.jeurceramsoc.2013.02.013},
  issn =          {0955-2219},
  url =           {https://www.sciencedirect.com/science/article/pii/
                  S0955221913001052},
}

@article{Li:SM:2018,
  author =        {Mian Li and Xiaobing Zhou and Hui Yang and Shiyu Du and
                   Qing Huang},
  journal =       {Scr. Mater.},
  pages =         {149-153},
  title =         {The critical issues of SiC materials for future
                   nuclear systems},
  volume =        {143},
  year =          {2018},
  abstract =      {SiC ceramic and SiC-based composites are promising
                   structural materials for nuclear applications. This
                   paper gives a viewpoint of the basic characterization
                   and research-highlights of SiC-based composites with
                   respect to applications in future nuclear systems. In
                   particular, the following aspects are considered: 1)
                   SiC fiber, 2) interphase, 3) SiC matrix, and 4) SiC
                   joining. Furthermore, remaining challenges and
                   specific technical issues of SiC-based composites for
                   nuclear applications are discussed, and some
                   suggestions to overcome these are proposed.},
  doiurl =        {https://doi.org/10.1016/j.scriptamat.2017.03.001},
  issn =          {1359-6462},
  url =           {https://www.sciencedirect.com/science/article/pii/
                  S135964621730115X},
}

@article{Katoh:JNM:2014,
  author =        {Yutai Katoh and Kazumi Ozawa and Chunghao Shih and
                   Takashi Nozawa and Robert J. Shinavski and
                   Akira Hasegawa and Lance L. Snead},
  journal =       {J. Nucl. Mater.},
  number =        {1},
  pages =         {448-476},
  title =         {Continuous SiC fiber, CVI SiC matrix composites for
                   nuclear applications: Properties and irradiation
                   effects},
  volume =        {448},
  year =          {2014},
  abstract =      {Silicon carbide (SiC) continuous fiber-reinforced,
                   SiC-matrix composites (SiC/SiC composites) are
                   industrially available materials that are promising
                   for applications in nuclear environments. The SiC/SiC
                   composites consisting of near-stoichiometric SiC
                   fibers, stoichiometric and fully crystalline SiC
                   matrices, and the pyrocarbon (PyC) or multilayered
                   PyC/SiC interphase between the fiber and the matrix
                   are considered particularly resistant to very high
                   radiation environments. This paper provides a summary
                   compilation of the properties of these composites,
                   specifically those with the chemically
                   vapor-infiltrated (CVI) SiC matrices, including newly
                   obtained results. The properties discussed are both
                   in unirradiated condition and after neutron
                   irradiation to intermediate fluence levels (most data
                   are for <∼10 displacement per atom) at
                   300--1300$\,^{\circ}$C.},
  doiurl =        {https://doi.org/10.1016/j.jnucmat.2013.06.040},
  issn =          {0022-3115},
  url =           {https://www.sciencedirect.com/science/article/pii/
                  S0022311513008647},
}

@article{Baroni:RMP:2001,
  author =        {Baroni, Stefano and De Gironcoli, Stefano and
                   Dal Corso, Andrea and Giannozzi, Paolo},
  journal =       {Rev. Mod. Phys.},
  number =        {2},
  pages =         {515},
  publisher =     {APS},
  title =         {Phonons and related crystal properties from
                   density-functional perturbation theory},
  volume =        {73},
  year =          {2001},
}

@article{Giannozzi:JPCM:2009,
  author =        {Giannozzi, Paolo and Baroni, Stefano and
                   Bonini, Nicola and Calandra, Matteo and Car, Roberto and
                   Cavazzoni, Carlo and Ceresoli, Davide and
                   Chiarotti, Guido L and Cococcioni, Matteo and
                   Dabo, Ismaila and others},
  journal =       {J. Phys.: Condens. Matter},
  number =        {39},
  pages =         {395502},
  publisher =     {IOP Publishing},
  title =         {QUANTUM ESPRESSO: a modular and open-source software
                   project for quantum simulations of materials},
  volume =        {21},
  year =          {2009},
}

@article{Giannozzi:JPCM:2017,
  author =        {Giannozzi, Paolo and Andreussi, Oliviero and
                   Brumme, Thomas and Bunau, Oana and
                   Nardelli, M Buongiorno and Calandra, Matteo and
                   Car, Roberto and Cavazzoni, Carlo and
                   Ceresoli, Davide and Cococcioni, Matteo and others},
  journal =       {J. Phys.: Condens. Matter},
  number =        {46},
  pages =         {465901},
  publisher =     {IOP Publishing},
  title =         {Advanced capabilities for materials modelling with
                   Quantum ESPRESSO},
  volume =        {29},
  year =          {2017},
}

@article{Perdew:PRB:1981,
  author =        {Perdew, John P and Zunger, Alex},
  journal =       {Phys. Rev. B},
  number =        {10},
  pages =         {5048},
  publisher =     {APS},
  title =         {Self-interaction correction to density-functional
                   approximations for many-electron systems},
  volume =        {23},
  year =          {1981},
}

@article{Serrano:APL:2002,
  author =        {Serrano, J and Strempfer, J and Cardona, M and
                   Schwoerer-B{\"o}hning, M and Requardt, H and
                   Lorenzen, M and Stojetz, B and Pavone, P and
                   Choyke, WJ},
  journal =       {Appl. Phys. Lett.},
  number =        {23},
  pages =         {4360--4362},
  publisher =     {American Institute of Physics},
  title =         {Determination of the phonon dispersion of zinc blende
                   (3C) silicon carbide by inelastic x-ray scattering},
  volume =        {80},
  year =          {2002},
}

@article{Hill:PPSS:1952,
  author =        {Hill, Richard},
  journal =       {Proc. Phys. Soc., London, Sect. A},
  number =        {5},
  pages =         {349},
  publisher =     {IOP Publishing},
  title =         {The elastic behaviour of a crystalline aggregate},
  volume =        {65},
  year =          {1952},
}

@article{Kelley:JACS:1941,
  author =        {Kelley, K K},
  journal =       {J. Am. Chem. Soc.},
  number =        {4},
  pages =         {1137--1139},
  publisher =     {ACS Publications},
  title =         {The Specific Heats at Low Temperatures of Crystalline
                   Boric Oxide, Boron Carbide and Silicon Carbide1},
  volume =        {63},
  year =          {1941},
}

@article{Collins:JAP:1990,
  author =        {Collins, A K and Pickering, Michael A and
                   Taylor, Raymond L},
  journal =       {J. Appl. Phys.},
  number =        {12},
  pages =         {6510--6512},
  publisher =     {American Institute of Physics},
  title =         {Grain size dependence of the thermal conductivity of
                   polycrystalline chemical vapor deposited $\beta$-SiC
                   at low temperatures},
  volume =        {68},
  year =          {1990},
}

@article{Pickering:NIMPRSASDAE:1990,
  author =        {Pickering, Michael A and Taylor, Raymond L and
                   Keeley, Joseph T and Graves, George A},
  journal =       {Nucl. Instrum. Methods Phys. Res., Sect. A},
  number =        {1-2},
  pages =         {95--100},
  publisher =     {Elsevier},
  title =         {Chemically vapor deposited silicon carbide (SiC) for
                   optical applications},
  volume =        {291},
  year =          {1990},
}

@book{Levinshtein::2001,
  author =        {Levinshtein, Michael E and Rumyantsev, Sergey L and
                   Shur, Michael S},
  publisher =     {John Wiley \& Sons},
  title =         {Properties of Advanced Semiconductor Materials: GaN,
                   AIN, InN, BN, SiC, SiGe},
  year =          {2001},
}

@article{Slack:JAP:1975,
  author =        {Slack, Glen A and Bartram, SF},
  journal =       {J. Appl. Phys.},
  number =        {1},
  pages =         {89--98},
  publisher =     {American Institute of Physics},
  title =         {Thermal expansion of some diamondlike crystals},
  volume =        {46},
  year =          {1975},
}

@inproceedings{Li::1989,
  author =        {Li, Z and Bradt, R C},
  booktitle =     {Silicon Carbide Symposium},
  title =         {{Thermal Expansion and Elastic Anisotropies of SiC as
                   Related to Polytype Structure}},
  year =          {1987},
}


