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After this work was completed, several publications appeared focusing on related systems, including: the paper titled "Oscillating rows of vortices in superconductors," by T. Matsuda, O. Kamimura, H. Kasai, K. Harada, T. Yoshida, T Akashi, A. Tonomura, Y. Nakayama, J. Shimoyama, K. Kishio, T. Hanaguri, and K. Kitazawa, Science 294, 2136 (2001); the work "A onedimensional chain state of vortex matter" by A. Grigorenko, S. Bending, T. Tamegai, S. Ooi, and M. Henini, Nature (London) 414, 728 (2001); and also A. Tonomura, H. Kasai, O. Kamimura, T. Matsuda, K. Harada, Y. Nakayama, J. Shimoyama, K. Kishio, T. Hanaguri, K. Kitazawa, M. Sasase, and S. Okayasu, Nature (London) 412, 620 (2001). Previous related work by R. Surdeanu, R. J. Wijngaarden, R. Griessen, J. Einfeld, and R. Wördenweber, Europhys. Lett. 54, 682 (2001), finds that "Both commensurate and incommensurate channels are observed as well as hopping between channels, in agreement with numerical simulations." Some of these channels studied in these works are formed by Josephson vortices, while other vortex channels are formed by a periodic array of pinning sites. These recent papers are evidence of the current interest in the area of "vortex motion in channels."
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Science
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Nakayama, Y.8
Shimoyama, J.9
Kishio, K.10
Hanaguri, T.11
Kitazawa, K.12
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After this work was completed, several publications appeared focusing on related systems, including: the paper titled "Oscillating rows of vortices in superconductors," by T. Matsuda, O. Kamimura, H. Kasai, K. Harada, T. Yoshida, T Akashi, A. Tonomura, Y. Nakayama, J. Shimoyama, K. Kishio, T. Hanaguri, and K. Kitazawa, Science 294, 2136 (2001); the work "A onedimensional chain state of vortex matter" by A. Grigorenko, S. Bending, T. Tamegai, S. Ooi, and M. Henini, Nature (London) 414, 728 (2001); and also A. Tonomura, H. Kasai, O. Kamimura, T. Matsuda, K. Harada, Y. Nakayama, J. Shimoyama, K. Kishio, T. Hanaguri, K. Kitazawa, M. Sasase, and S. Okayasu, Nature (London) 412, 620 (2001). Previous related work by R. Surdeanu, R. J. Wijngaarden, R. Griessen, J. Einfeld, and R. Wördenweber, Europhys. Lett. 54, 682 (2001), finds that "Both commensurate and incommensurate channels are observed as well as hopping between channels, in agreement with numerical simulations." Some of these channels studied in these works are formed by Josephson vortices, while other vortex channels are formed by a periodic array of pinning sites. These recent papers are evidence of the current interest in the area of "vortex motion in channels."
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Nature (London)
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After this work was completed, several publications appeared focusing on related systems, including: the paper titled "Oscillating rows of vortices in superconductors," by T. Matsuda, O. Kamimura, H. Kasai, K. Harada, T. Yoshida, T Akashi, A. Tonomura, Y. Nakayama, J. Shimoyama, K. Kishio, T. Hanaguri, and K. Kitazawa, Science 294, 2136 (2001); the work "A onedimensional chain state of vortex matter" by A. Grigorenko, S. Bending, T. Tamegai, S. Ooi, and M. Henini, Nature (London) 414, 728 (2001); and also A. Tonomura, H. Kasai, O. Kamimura, T. Matsuda, K. Harada, Y. Nakayama, J. Shimoyama, K. Kishio, T. Hanaguri, K. Kitazawa, M. Sasase, and S. Okayasu, Nature (London) 412, 620 (2001). Previous related work by R. Surdeanu, R. J. Wijngaarden, R. Griessen, J. Einfeld, and R. Wördenweber, Europhys. Lett. 54, 682 (2001), finds that "Both commensurate and incommensurate channels are observed as well as hopping between channels, in agreement with numerical simulations." Some of these channels studied in these works are formed by Josephson vortices, while other vortex channels are formed by a periodic array of pinning sites. These recent papers are evidence of the current interest in the area of "vortex motion in channels."
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(2001)
Nature (London)
, vol.412
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Tonomura, A.1
Kasai, H.2
Kamimura, O.3
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Hanaguri, T.9
Kitazawa, K.10
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After this work was completed, several publications appeared focusing on related systems, including: the paper titled "Oscillating rows of vortices in superconductors," by T. Matsuda, O. Kamimura, H. Kasai, K. Harada, T. Yoshida, T Akashi, A. Tonomura, Y. Nakayama, J. Shimoyama, K. Kishio, T. Hanaguri, and K. Kitazawa, Science 294, 2136 (2001); the work "A onedimensional chain state of vortex matter" by A. Grigorenko, S. Bending, T. Tamegai, S. Ooi, and M. Henini, Nature (London) 414, 728 (2001); and also A. Tonomura, H. Kasai, O. Kamimura, T. Matsuda, K. Harada, Y. Nakayama, J. Shimoyama, K. Kishio, T. Hanaguri, K. Kitazawa, M. Sasase, and S. Okayasu, Nature (London) 412, 620 (2001). Previous related work by R. Surdeanu, R. J. Wijngaarden, R. Griessen, J. Einfeld, and R. Wördenweber, Europhys. Lett. 54, 682 (2001), finds that "Both commensurate and incommensurate channels are observed as well as hopping between channels, in agreement with numerical simulations." Some of these channels studied in these works are formed by Josephson vortices, while other vortex channels are formed by a periodic array of pinning sites. These recent papers are evidence of the current interest in the area of "vortex motion in channels."
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Europhys. Lett.
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Surdeanu, R.1
Wijngaarden, R.J.2
Griessen, R.3
Einfeld, J.4
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