Extrinsic giant magnetoresistance in chromium (IV) oxide, CrO2

Manoharan SS, Elefant D, Reiss G, Goodenough JB (1998)
Applied Physics Letters 72(8): 984-986.

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Polycrystalline CrO2 is shown to exhibit a giant magnetoresistance (GMR) at low temperatures. A rapid decrease in the GMR with increasing temperature is correlated with a decrease in the intergranular resistance. Single-crystal CrO2 is a half-metallic ferromagnet, as the data are interpreted to reflect two types of charge carriers, crossing a grain boundary: those that tunnel between conduction bands of adjacent grains and those that hop after residing at a localized state fora time long compared to a spin relaxation time. (C) 1998 American Institute of Physics.
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Manoharan SS, Elefant D, Reiss G, Goodenough JB. Extrinsic giant magnetoresistance in chromium (IV) oxide, CrO2. Applied Physics Letters. 1998;72(8):984-986.
Manoharan, S. S., Elefant, D., Reiss, G., & Goodenough, J. B. (1998). Extrinsic giant magnetoresistance in chromium (IV) oxide, CrO2. Applied Physics Letters, 72(8), 984-986.
Manoharan, S. S., Elefant, D., Reiss, G., and Goodenough, J. B. (1998). Extrinsic giant magnetoresistance in chromium (IV) oxide, CrO2. Applied Physics Letters 72, 984-986.
Manoharan, S.S., et al., 1998. Extrinsic giant magnetoresistance in chromium (IV) oxide, CrO2. Applied Physics Letters, 72(8), p 984-986.
S.S. Manoharan, et al., “Extrinsic giant magnetoresistance in chromium (IV) oxide, CrO2”, Applied Physics Letters, vol. 72, 1998, pp. 984-986.
Manoharan, S.S., Elefant, D., Reiss, G., Goodenough, J.B.: Extrinsic giant magnetoresistance in chromium (IV) oxide, CrO2. Applied Physics Letters. 72, 984-986 (1998).
Manoharan, SS, Elefant, D, Reiss, Günter, and Goodenough, JB. “Extrinsic giant magnetoresistance in chromium (IV) oxide, CrO2”. Applied Physics Letters 72.8 (1998): 984-986.
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