CSU : Department of Physics : Magnetics Laboratory : 

2001-current ] [ 1991-2000 ] [ 1981-1990 ] [ 1971-1980 ] [ 1961-1970 ]

Publications 1961-1970

22. "Field induced anisotropy in partially ordered Ni-Mn Alloys at low temperature,"
C. E. Patton and S. Chikazumi, J. Phys. Soc. Japan 29, 1640 (1970).
21. "Effect of grain size on the microwave properties of polycrystalline yttrium iron garnet,"
C. E. Patton, J. Appl. Phys. 41, 1637-1641 (1970).
20. "Microwave properties of fine grain polycrystalline yttrium iron garnet,"
C. E. Patton, J. Appl. Phys. 41, 1355-1356 (1970).
19. "Influence of spin-wave linewidth on the instability threshold for oblique pumping,"
C. E. Patton, J. Appl. Phys. 41, 431-433 (1970).
18. "Theory for the first-order spin-wave instability threshold in ferromagnetic insulators of ellipsoidal shape with an arbitrary pumping configuration,"
C. E. Patton, J. Appl. Phys. 40, 2837-2843 (1969).
17. "A versatile toroid hysteresis loop tracer with direct readout of loop parameters," C. E. Patton, Rev. Sci. Instr. 40, 939-941 (1969).
16. "The first-order spin-wave instability threshold in saturated and partially magnetized spheres, rods, and disks of polycrystalline yttrium iron garnet at 9.1 GHz,"
C. E. Patton and J. J. Green, IEEE Trans. Magn. 5, 626-631 (1969).
15. "Effective linewidth due to porosity and anisotropy in polycrystalline yttrium iron garnet and Ca-V substituted yttrium iron garnet at 10 GHz,"
C. E. Patton, Phys. Rev. 179, 352-358 (1969).
14. "Threshold microwave field amplitude for the unstable growth of spin waves under oblique pumping,"
J. J. Green, C. E. Patton, and E. Stern, J. Appl. Phys. 40, 172-177 (1969).
13. "Linewidth and relaxation processes for the main resonance in the spin-wave spectra of Ni-Fe alloy films,"
C. E. Patton, J. Appl. Phys. 39, 3060-3068 (1968).
12. "Lorentz microscopy determination of domain-wall width in thick ferromagnetic films,"
T. Suzuki, C. H. Wilts, and C. E. Patton, J. Appl. Phys. 39, 1983-1986 (1968).
11. "A comparison of the losses of domain-wall motion and ferromagnetic resonance in thin Ni-Fe alloy films,"
C. E. Patton and F. B. Humphrey, J. Appl. Phys. 39, 857-858 (1968).
10. "Magnetostatic modes in axially magnetized polycrystalline YIG rods at 9.96 GHz,"
C. E. Patton and E. Schloemann, IEEE Trans. Magn. 4, 596-602 (1968).
9. "Quasistatic reversal processes,"
C. E. Patton, Magn. Mat. 1968 Digest, H. Chang and T. R. McGuire, editors (American Press, New York, 1968), pp. 138-142.
8. "Domain-wall motion by Néel-quasi-Néel wall pairs in two-layer Ni-Fe alloy films,"
C. E. Patton and F. B. Humphrey, J. Appl. Phys. 38, 4102-4103 (1967).
7. "Temperature dependence of the ferromagnetic resonance linewidth in thin Ni-Fe films,"
C. E. Patton and C. H. Wilts, J. Appl. Phys. 38, 3537-3540 (1967).
6. "Relaxation processes for ferromagnetic resonance in thin films,"
C. E. Patton, C. H. Wilts, and F. B. Humphrey, J. Appl. Phys. 38, 1358-1359 (1967).
5. "Domain wall motion in double nickel-iron films,"
C. E. Patton and F. B. Humphrey, Nature 213, 1010-1011 (1967).
4. "Mobility and loss mechanisms for domain wall motion in thin ferromagnetic films,"
C. E. Patton and F. B. Humphrey, J. Appl. Phys. 37, 4269-4274 (1966).
3. "Eddy-current-limited domain-wall motion in thin ferromagnetic films,"
C. E. Patton, T. C. McGill, and C. H. Wilts, J. Appl. Phys. 37, 3594-3598 (1966); erratum in 37, 4301 (1966).
2. "Domain wall motion in multilayered magnetic thin films,"
C. E. Patton and F. B. Humphrey, J. Appl. Phys. 37, 1270-1271 (1966).
1. "Wall Motion by Reverse Néel Walls in Thin Films,"
C. E. Patton and F. B. Humphrey, J. Appl. Phys. 35, 921-922 (1964).
 
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