He3 SANS Publications

2023, 2022, 2020, 2019, 2018, 2017, 2015, 2014, 2013, 2012, 2011, 2010, 2009, 2005, 2000

2023

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  1. Advanced polarization analysis capability on the very small-angle neutron scattering instrument at the NIST Center for Neutron Research
    Chen, W.C., Krycka, K.L., Watson, S.M., Barker, J.G., Gaudet, J., Burrall, H., and Borchers, J.A., J. Phys.: Conf. Ser. 2481, 012006 (2023)
  2. Revealing magnetic correlations in ferromagnetic alloys with polarized SANS
    Adawi, H., Bhattarai, S., Lussier, J.-G., Krycka, K., and Schroeder, A., J. Phys.: Conf. Ser. 2481, 012001 (2023)
  3. Evolution of short-range magnetic correlations in ferromagnetic Ni-V alloys
    Bhattarai, S., Adawi, H., Lussier, J.-G., Gebretsadik, A., Dzero, M., Krycka, K.L., and Schroeder, A., Phys. Rev. B 107, 054409 (2023)

2022

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  1. Chemically Induced Magnetic Dead Shells in Superparamagnetic Ni Nanoparticles Deduced from Polarized Small-Angle Neutron Scattering
    Das, B., Batley, J.T., Krycka, K.L., Borchers, J.A., Quarterman, P., Korostynski, C., Nguyen, M., Kamboj, I., Aydil, E.S., and Leighton, C., ACS Appl. Mater. Interfaces 14, 33491–33504 (2022)
  2. The very small angle neutron scattering instrument at the National Institute of Standards and Technology
    Barker, J., Moyer, J., Kline, S., Jensen, G., Cook, J., Gagnon, C., Kelley, E., Chabot, J.P., Maliszewskyj, N., Parikh, C., Chen, W., Murphy, R.P., and Glinka, C., J Appl Crystallogr 55, 271–283 (2022)
  3. Magnetic correlations of iron oxide nanoparticles as probed by polarized SANS in stretched magnetic nanoparticle–elastomer composites
    Oberdick, S.D., Borchers, J.A., and Krycka, K.L., Appl. Phys. Lett. 120, 052401 (2022)

2020

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  1. Investigating spin coupling across a three-dimensional interface in core/shell magnetic nanoparticles
    Kons, C., Phan, M.-H., Srikanth, H., Arena, D.A., Nemati, Z., Borchers, J.A., and Krycka, K.L., Phys. Rev. Materials 4, 034408 (2020)
  2. Magnetic correlations in the disordered ferromagnetic alloy Ni-V revealed with small angle neutron scattering
    Schroeder, A., Bhattarai, S., Gebretsadik, A., Adawi, H., Lussier, J.-G., and Krycka, K.L., AIP Advances 10, 015036 (2020)
  3. In Situ Dimensional Characterization of Magnetic Nanoparticle Clusters during Induction Heating
    Carlton, H., Krycka, K., Bleuel, M., and Huitink, D., Part. Part. Syst. Charact. 37, 1900358 (2020)

2019

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  1. Exchange Bias in Bulk α-Fe/γ-Fe 70 Mn 30 Nanocomposites for Permanent Magnet Applications
    McDonald, I.J., Jamer, M.E., Krycka, K.L., Anber, E., Foley, D., Lang, A.C., Ratcliff, W.D., Heiman, D., Taheri, M.L., Borchers, J.A., and Lewis, L.H., ACS Appl. Nano Mater. 2, 1940–1950 (2019)
  2. Correlated spin canting in ordered core-shell Fe3O4/MnxFe3−xO4 nanoparticle assemblies
    Ijiri, Y., Krycka, K.L., Hunt-Isaak, I., Pan, H., Hsieh, J., Borchers, J.A., Rhyne, J.J., Oberdick, S.D., Abdelgawad, A., and Majetich, S.A., Phys. Rev. B 99, 094421 (2019)

2018

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  1. Spin waves across three-dimensional, close-packed nanoparticles
    Krycka, K.L., Rhyne, J.J., Oberdick, S.D., Abdelgawad, A.M., Borchers, J.A., Ijiri, Y., Majetich, S.A., and Lynn, J.W., New J. Phys. 20, 123020 (2018)
  2. Phase-sensitive small-angle neutron scattering experiment
    Brok, E., Krycka, K.L., Vreeland, E.C., Gomez, A., Huber, D.L., and Majkrzak, C.F., J. Phys. Commun. 2, 095018 (2018)
  3. Spin canting across core/shell Fe3O4/MnxFe3-xO4 nanoparticles
    Oberdick, S.D., Abdelgawad, A., Moya, C., Mesbahi-Vasey, S., Kepaptsoglou, D., Lazarov, V.K., Evans, R.F.L., Meilak, D., Skoropata, E., van Lierop, J., Hunt-Isaak, I., Pan, H., Ijiri, Y., Krycka, K.L., Borchers, J.A., and Majetich, S.A., Sci Rep 8, 3425 (2018)

2017

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  1. Complex Three-Dimensional Magnetic Ordering in Segmented Nanowire Arrays
    Grutter, A.J., Krycka, K.L., Tartakovskaya, E.V., Borchers, J.A., Reddy, K.S.M., Ortega, E., Ponce, A., and Stadler, B.J.H., ACS Nano 11, 8311–8319 (2017)
  2. Spin-analyzed SANS for soft matter applications
    Chen, W.C., Barker, J.G., Jones, R., Krycka, K.L., Watson, S.M., Gagnon, C., Perevozchivoka, T., Butler, P., and Gentile, T.R., J. Phys.: Conf. Ser. 862, 012004 (2017)

2015

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  1. Internal Magnetic Structure of Nanoparticles Dominates Time-Dependent Relaxation Processes in a Magnetic Field
    Dennis, C.L., Krycka, K.L., Borchers, J.A., Desautels, R.D., van Lierop, J., Huls, N.F., Jackson, A.J., Gruettner, C., and Ivkov, R., Adv. Funct. Mater. 25, 4300–4311 (2015)

2014

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  1. Particle moment canting in CoFe2O4 nanoparticles
    Hasz, K., Ijiri, Y., Krycka, K.L., Borchers, J.A., Booth, R.A., Oberdick, S., and Majetich, S.A., Phys. Rev. B 90, 180405 (2014)
  2. Origin of Surface Canting within Fe3O4 Nanoparticles
    Krycka, K.L., Borchers, J.A., Booth, R.A., Ijiri, Y., Hasz, K., Rhyne, J.J., and Majetich, S.A., Phys. Rev. Lett. 113, 147203 (2014)

2013

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  1. Magnetic properties of GaAs/Fe core/shell nanowires
    Pimpinella, R.E., Zhang, D., McCartney, M.R., Smith, D.J., Krycka, K.L., Kirby, B.J., O'Dowd, B.J., Sonderhouse, L., Leiner, J., Liu, X., Dobrowolska, M., and Furdyna, J.K., J. Appl. Phys. 113, 17B520 (2013)
  2. Correlating material-specific layers and magnetic distributions within onion-like Fe3O4/MnO/γ-Mn2O3 core/shell nanoparticles
    Krycka, K.L., Borchers, J.A., Laver, M., Salazar-Alvarez, G., López-Ortega, A., Estrader, M., Suriñach, S., Baró, M.D., Sort, J., and Nogués, J., Journal of Applied Physics 113, 17B531 (2013)
  3. Multicore Magnetic Nanoparticles for Magnetic Particle Imaging
    Eberbeck, D., Dennis, C.L., Huls, N.F., Krycka, K.L., Gruttner, C., and Westphal, F., IEEE Trans. Magn. 49, 269–274 (2013)

2012

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  1. Polarization-analyzed small-angle neutron scattering. I. Polarized data reduction using Pol-Corr
    Krycka, K., Chen, W., Borchers, J., Maranville, B., and Watson, S., J Appl Cryst 45, 546–553 (2012)
  2. Polarization-analyzed small-angle neutron scattering. II. Mathematical angular analysis
    Krycka, K., Borchers, J., Ijiri, Y., Booth, R., and Majetich, S., J Appl Cryst 45, 554–565 (2012)

2011

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  1. Local Weak Ferromagnetism in Single-Crystalline Ferroelectric BiFeO3
    Ramazanoglu, M., Laver, M., Ratcliff, W., Watson, S.M., Chen, W.C., Jackson, A., Kothapalli, K., Lee, S., Cheong, S.-W., and Kiryukhin, V., Phys. Rev. Lett. 107, 207206 (2011)
  2. Nanometer-size magnetic domains and coherent magnetization reversal in a giant exchange-bias system
    Dufour, C., Fitzsimmons, M.R., Borchers, J.A., Laver, M., Krycka, K.L., Dumesnil, K., Watson, S.M., Chen, W.C., Won, J., and Singh, S., Phys. Rev. B 84, 064420 (2011)
  3. Internal magnetic structure of dextran coated magnetite nanoparticles in solution using small angle neutron scattering with polarization analysis
    Krycka, K.L., Jackson, A.J., Borchers, J.A., Shih, J., Briber, R., Ivkov, R., Grüttner, C., and Dennis, C.L., Journal of Applied Physics 109, 07B513 (2011)

2010

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  1. Magnetostriction and Magnetic Heterogeneities in Iron-Gallium
    Laver, M., Mudivarthi, C., Cullen, J.R., Flatau, A.B., Chen, W.-C., Watson, S.M., and Wuttig, M., Phys. Rev. Lett. 105, 027202 (2010)
  2. Core-Shell Magnetic Morphology of Structurally Uniform Magnetite Nanoparticles
    Krycka, K.L., Booth, R.A., Hogg, C.R., Ijiri, Y., Borchers, J.A., Chen, W.C., Watson, S.M., Laver, M., Gentile, T.R., Dedon, L.R., Harris, S., Rhyne, J.J., and Majetich, S.A., Phys. Rev. Lett. 104, 207203 (2010)
  3. Origin of Electric-Field-Induced Magnetization in Multiferroic HoMnO3
    Ueland, B.G., Lynn, J.W., Laver, M., Choi, Y.J., and Cheong, S.-W., Phys. Rev. Lett. 104, 147204 (2010)
  4. Internal magnetic structure of magnetite nanoparticles at low temperature
    Krycka, K.L., Borchers, J.A., Booth, R.A., Hogg, C.R., Ijiri, Y., Chen, W.C., Watson, S.M., Laver, M., Gentile, T.R., Harris, S., Dedon, L.R., Rhyne, J.J., and Majetich, S.A., Journal of Applied Physics 107, 09B525 (2010)

2009

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  1. Applications of 3He neutron spin filters at the NCNR
    Chen, W.C., Erwin, R., McIver III, J.W., Watson, S., Fu, C.B., Gentile, T.R., Borchers, J.A., Lynn, J.W., and Jones, G.L., Physica B 404, 2663–2666 (2009)
  2. Resolving 3D magnetism in nanoparticles using polarization analyzed SANS
    Krycka, K.L., Booth, R., Borchers, J.A., Chen, W.C., Conlon, C., Gentile, T.R., Hogg, C., Ijiri, Y., Laver, M., Maranville, B.B., Majetich, S.A., Rhyne, J.J., and Watson, S.M., Physica B: Condensed Matter 404, 2561–2564 (2009)

2005

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  1. Polarized 3He spin filters for slow neutron physics
    Gentile, T.R., Chen, W.C., Jones, G.L., Babcock, E., and Walker, T.G., J Res. Natl. Inst. Stand. Technol 110, 299 (2005)

2000

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  1. SANS polarization analysis with nuclear spin-polarized 3He
    Gentile, T.R., Jones, G.L., Thompson, A.K., Barker, J., Glinka, C.J., Hammouda, B., and Lynn, J.W., Nucl. Instrum. And Meth. A 33, 771–774 (2000)