GCOE CEDI Osaka Univ.

‘εγ‘εŠwƒOƒ[ƒoƒ‹COEƒvƒƒOƒ‰ƒ€ Center for Electronic Devices Innovation

‘εγ‘εŠwƒOƒ[ƒoƒ‹COEƒvƒƒOƒ‰ƒ€ ŽŸ’‘γ“dŽqƒfƒoƒCƒX‹³ˆηŒ€‹†ŠJ”­‹’“_

HOME > ŽΐΡ•ρ > ˜_•Ά > Ž…θ G•v
Ž…θ G•v [Šξ‘bHŠwŒ€‹†‰Θ(ƒVƒXƒeƒ€‘n¬κU)₯‹³Žφ]
  1. Ž…θG•vAg”š”­•¨E–ƒ–ς‚π“d”g‚ΕŒŸ’mhAŒŸΈ‹ZpP0901-16 Vol.14 No.6(2009).
  2. Ž…θG•vAg”š”­•¨E•s³–ς•¨ƒZƒ“ƒVƒ“ƒO‹ZphA Œv‘ͺ‚Ɛ§Œδ10 Vol.48738-741(2009).
  3. ‹{θ‰ΐŽχA’·“ˆ Œ«A΄–μ Š°A“c’†–FeArˆδ—L‹CAŽ…θG•vAgSQUID‚π—p‚’‚½ƒŒ[ƒ‹”’F‘w‚ΜŒŸo•ϋ–@h RTRI REPORT Vol.24(2010).
  4. D. F. He, M. Tachiki, and H. Itozaki, gDetecting the N-14 NQR signal using a high-Tc SQUID,h IEEE Transactions on Applied Superconductivity, Vol.17 (2), pp.843-845 (2007).
  5. D. F. He, M. Tachiki, H. Itozaki, gN-14 NQR using a high-T-c rf SQUID with a normal metal transformer,h Superconductor Science & Technology, 21, 1, 015023 (2008)
  6. G. Ota, H. Itozaki, gEmission of nuclear quadrupole resonance from polycrystalline hexamethylenetetramine,h Solid State Nuclear Magnetic Resonance, 33, 3, 36-40 (2008)
  7. K. Okita, M. Tsuduki, K. Sakuta, and H. Itozaki, gRemote NDE using high-Tc SQUID,h Physica C, 463-465,1052-1055 (2007).
  8. K. Sakuta, T. Araya, Y. Kitamura, M. Kamishiro, and H. Itozaki, gEnvironmental MHz noise reduction for SQUID application,h IEEE Transactions on Applied Superconductivity, Vol.17(2), pp.726-729 (2007).
  9. K. Sakuta, Y. Narita, and H. Itozaki, gRadio frequency interference noise reduction using a field programmable gate array for SQUID applications,h Superconductor Science and Technology, vol.20(11), pp.S389-S392 (2007).
  10. M. Tachiki, D. F. He, and H. Itozaki, gSensing of chemical substances using SQUID-based nuclear quadrupole resonance,h Physica C, Vol.463, p.1034-1037 (2007).
  11. T. Hayashi, M. Tachiki, and H. Itozaki, gSQUID probe microscope combined with scanning tunneling microscope,h IEEE Transactions On Applied Superconductivity, Vol. 17(2 ), p.792-795 (2007).
  12. T. Hayashi, M. Tachiki, and H. Itozaki, gSTM-SQUID probe microscope,h Superconductor Science and Technology, vol.20(11), pS374-S379 (2007).
  13. X. Y. Kong, K. Kojima, K. Sakuta, and H. Itozaki, gCurrent vector distribution in semiconductor observed by laser SQUID microscope with needle,h Physica C, Vol.463, p.1048-1051 (2007).
  14. X. Y. Kong, K. Sakuta, and H. Itozaki, gMagnetic shield around the flux guide in SQUID probe microscope with finite element simulation,h Superconductor Science and Technology, vol.20(12), p1140-1143 (2007).
  15. X. Y. Kong, Y. Nakatani, A. Yutani, T. Maki, H. Itozaki, gFirst-order High Tc SQUID Gradiometer,hPhysica C, 468, 1946-1949 (2008)