Publications

Found 201 results
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Conference Proceedings
Preu S., Lu H., Kawasaki J.K., Ouellette D.G., Palmstrom C.J., Sherwin M.S., Gossard A.C..  2014.  THz spectroscopy of self-assembled ErSb nanowire. Conference on Lasers and Electro-Optics (CLEO) - Laser Science to Photonic Applications.
Journal Article
Stanley C.R, Welch D., Wicks G.W, Wood C.EC, Palmstrom C., Pollack F.H, Parayanthal P..  1983.  (Al xGa 1-x) 0.47In 0.53As; growth and characterization. Gallium Arsenide and Related Compounds, 1982. Tenth International Symposium on Gallium Arsenide and Related Compounds. :173-80.
Stanley C.R, Welch D., Wicks G.W, Wood C.EC, Palmstrom C., Pollack F.H, Parayanthal P..  1983.  (ALXGA1-X)0.47IN0.53AS - GROWTH AND CHARACTERIZATION. Institute of Physics Conference Series. :173-180.
Jeong H.K, Komesu T., Dowben P.A, Schultz B.D, Palmstrom C.J.  2002.  The anomalous effective surface Debye temperature of ErAs (100). Physics Letters A. 302:217-223.
Suominen H.J., Danon J., Kjaergaard M., Flensberg K., Shabani J., Palmstrøm C.J., Nichele F., Marcus C.M..  2017.  Anomalous Fraunhofer Interference in Epitaxial Superconductor-Semiconductor Josephson Junctions. Phys Rev B. 95, 035307
Suominen H.J., Danon J., Kjaergaard M., Flensberg K., Shabani J., Palmstrøm C.J., Nichele F., Marcus C.M..  2017.  Anomalous Fraunhofer Interference in Epitaxial Superconductor-Semiconductor Josephson Junctions. Phys Rev B. 95, 035307
Shabani J., DasSarma S., Palmstrøm C.J.  2014.  An apparent metal-insulator transition in high-mobility two-dimensional InAs heterostructures. Phys. Rev. B. 90, 161303 (2014).
LeBeau JM, Hu QO, Palmstrom CJ, Stemmer S.  2008.  Atomic structure of postgrowth annealed epitaxial Fe/(001) GaAs interfaces. Applied Physics Letters. 93
Wuyts K., Watte J., Silverans R.E, Vanhove M., Borghs G., Palmstrom C.J, Florez L.T, Munder H..  1994.  BACK SIDE RAMAN MEASUREMENTS ON GE/PD/N-GAAS OHMIC CONTACT STRUCTURES. Applied Physics Letters. 64:2406-2408.
Schwarz S.A, Palmstrom C.J, Schwartz C.L, Sands T., Shantharama L.G, Harbison J.P, Florez L.T, Marshall E.D, Han C.C, Lau S.S et al..  1990.  BACKSIDE SECONDARY ION MASS-SPECTROMETRY INVESTIGATION OF OHMIC AND SCHOTTKY CONTACTS ON GAAS. Journal of Vacuum Science & Technology a-Vacuum Surfaces and Films. 8:2079-2083.
Schwarz S.A, Palmstrom C.J, Schwartz C.L, Sands T., Shantharama L.G, Harbison J.P, Florez L.T, Marshall E.D, Han C.C, Lau S.S et al..  1990.  BACKSIDE SECONDARY ION MASS-SPECTROMETRY INVESTIGATION OF OHMIC AND SCHOTTKY CONTACTS ON GAAS. Journal of Vacuum Science & Technology a-Vacuum Surfaces and Films. 8:2079-2083.
Schwarz S.A, Palmstrom C.J, Schwartz C.L, Sands T., Shantharama L.G, Harbison J.P, Florez L.T, Marshall E.D, Han C.C, Lau S.S et al..  1990.  BACKSIDE SECONDARY ION MASS-SPECTROMETRY INVESTIGATION OF OHMIC AND SCHOTTKY CONTACTS ON GAAS. Journal of Vacuum Science & Technology a-Vacuum Surfaces and Films. 8:2079-2083.
Schwarz S.A, Palmstrom C.J, Schwartz C.L, Sands T., Shantharama L.G, Harbison J.P, Florez L.T, Marshall E.D, Han C.C, Lau S.S et al..  1990.  BACKSIDE SECONDARY ION MASS-SPECTROMETRY INVESTIGATION OF OHMIC AND SCHOTTKY CONTACTS ON GAAS. Journal of Vacuum Science & Technology a-Vacuum Surfaces and Films. 8:2079-2083.
Schwarz S.A, Palmstrom C.J, Bhat R., Koza M., Wang L.C, Park M.H.  1995.  Backside SIMS study of Ge/Pd non-alloyed ohmic contacts on InGaAs. Beam-Solid Interactions for Materials Synthesis and Characterization. Symposium. :471-6.
Crooker S.A, Garlid E.S, Chantis A.N, Smith D.L, Reddy K.SM, Hu Q.O, Kondo T., Palmstrom C.J, Crowell P.A.  2009.  Bias-controlled sensitivity of ferromagnet/semiconductor electrical spin detectors. Physical Review B. 80
Farrell H.H, Schultz B.D, Palmstrom C.J.  2009.  Comment on "High-resolution core-level photoemission study on GaAs(111)B surfaces" J. Appl. Phys. 101, 043516 (2007). Journal of Applied Physics. 105
Isakovic A.F, Berezovsky J., Crowell P.A, Chen L.C, Carr D.M, Schultz B.D, Palmstrom C.J.  2001.  Control of magnetic anisotropy in Fe1-xCox films on vicinal GaAs and Sc1-yEryAs surfaces. Journal of Applied Physics. 89:6674-6676.
Burke PG, Buehl TE, Gilles P, Lu H, Shakouri A, Palmstrom CJ, Bowers JE, Gossard AC.  2012.  Controlling n-Type Carrier Density from Er Doping of InGaAs with MBE Growth Temperature. Journal of Electronic Materials. 41:948-953.
Makowski J.D, Anderson B.D, Chan W.S, Saarinen M.J, Palmstrom C.J, Talghader J.J.  2009.  Coupling of quantum states with mechanical heterostructures. 15th International Conference on Solid-State Sensors, Actuators and Microsystems. Transducers 2009. :489-92.
Hong B.WP, Song J.I, Palmstrom C.J, Vandergaag B., Chough K.B, Hayes J.R.  1994.  DC, RF, AND NOISE CHARACTERISTICS OF CARBON-DOPED BASE INP/INGAAS HETEROJUNCTION BIPOLAR-TRANSISTORS. Ieee Transactions on Electron Devices. 41:19-25.
Shojaei B., O'Malley P.JJ, Shabani J., Roushan P., Schultz B.D, Lutchyn R.M., Nayak C., Martinis J.M., Palmstrom C.J.  2016.  Demonstration of gate control of spin splitting in a high-mobility InAs/AlSb two-dimensional electron gas. Physical Review B. 93, 075302
Shojaei B., O'Malley P.JJ, Shabani J., Roushan P., Schultz B.D, Lutchyn R.M., Nayak C., Martinis J.M., Palmstrom C.J.  2016.  Demonstration of gate control of spin splitting in a high-mobility InAs/AlSb two-dimensional electron gas. Physical Review B. 93, 075302
Shojaei B., O'Malley P.JJ, Shabani J., Roushan P., Schultz B.D, Lutchyn R.M., Nayak C., Martinis J.M., Palmstrom C.J.  2016.  Demonstration of gate control of spin splitting in a high-mobility InAs/AlSb two-dimensional electron gas. Physical Review B. 93, 075302
Choi S.G, Aspnes D.E, Stoute N.A, Kim Y.D, Kim H.J, Chang Y.C, Palmstrom C.J.  2008.  Dielectric properties of InAsP alloy thin films and evaluation of direct- and reciprocal-space methods of determining critical-point parameters. Physica Status Solidi a-Applications and Materials Science. 205:884-887.
Liu C., Patel S.J., Peterson T.A., Geppert C.C., Christie K.D., Stecklein G., Palmstrom C.J, Crowell P.A.  2016.  Dynamic detection of electron spin accumulation in ferromagnet-semiconductor devices by ferromagnetic resonance. Nature Communications. 7, 10296

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