The Experts below are selected from a list of 90075 Experts worldwide ranked by ideXlab platform
Yuichi Ikuhara - One of the best experts on this subject based on the ideXlab platform.
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application of coincidence of reciprocal Lattice Point model to metal sapphire hetero interfaces
Materials Science and Engineering B-advanced Functional Solid-state Materials, 2010Co-Authors: Christine Marie Montesa, Naoya Shibata, Tetsuya Tohei, Kazuhiro Akiyama, Yoshirou Kuromitsu, Yuichi IkuharaAbstract:Abstract Coincidence of reciprocal Lattice Point (CRLP) model was used to predict the stable orientation relationships of metal/α-Al 2 O 3 hetero interfaces from geometrical considerations. The predicted stable orientation relationships (ORs) between various metals and α-Al 2 O 3 agreed well with the experimentally observed ORs at the hetero interfaces fabricated by film growth processes. In the bcc metal/α-Al 2 O 3 systems with different fabrication processes such as internal oxidation, Burgers and Pitsch–Schrader ORs were experimentally observed, which have not been predicted as the most stable orientation relationships by CRLP. However, these ORs are predicted in CRLP as secondary stable orientations.
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Application of coincidence of reciprocal Lattice Point model to metal/sapphire hetero interfaces
Materials Science and Engineering B-advanced Functional Solid-state Materials, 2009Co-Authors: Christine Marie Montesa, Naoya Shibata, Tetsuya Tohei, Kazuhiro Akiyama, Yoshirou Kuromitsu, Yuichi IkuharaAbstract:Abstract Coincidence of reciprocal Lattice Point (CRLP) model was used to predict the stable orientation relationships of metal/α-Al 2 O 3 hetero interfaces from geometrical considerations. The predicted stable orientation relationships (ORs) between various metals and α-Al 2 O 3 agreed well with the experimentally observed ORs at the hetero interfaces fabricated by film growth processes. In the bcc metal/α-Al 2 O 3 systems with different fabrication processes such as internal oxidation, Burgers and Pitsch–Schrader ORs were experimentally observed, which have not been predicted as the most stable orientation relationships by CRLP. However, these ORs are predicted in CRLP as secondary stable orientations.
Naoya Shibata - One of the best experts on this subject based on the ideXlab platform.
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application of coincidence of reciprocal Lattice Point model to metal sapphire hetero interfaces
Materials Science and Engineering B-advanced Functional Solid-state Materials, 2010Co-Authors: Christine Marie Montesa, Naoya Shibata, Tetsuya Tohei, Kazuhiro Akiyama, Yoshirou Kuromitsu, Yuichi IkuharaAbstract:Abstract Coincidence of reciprocal Lattice Point (CRLP) model was used to predict the stable orientation relationships of metal/α-Al 2 O 3 hetero interfaces from geometrical considerations. The predicted stable orientation relationships (ORs) between various metals and α-Al 2 O 3 agreed well with the experimentally observed ORs at the hetero interfaces fabricated by film growth processes. In the bcc metal/α-Al 2 O 3 systems with different fabrication processes such as internal oxidation, Burgers and Pitsch–Schrader ORs were experimentally observed, which have not been predicted as the most stable orientation relationships by CRLP. However, these ORs are predicted in CRLP as secondary stable orientations.
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Application of coincidence of reciprocal Lattice Point model to metal/sapphire hetero interfaces
Materials Science and Engineering B-advanced Functional Solid-state Materials, 2009Co-Authors: Christine Marie Montesa, Naoya Shibata, Tetsuya Tohei, Kazuhiro Akiyama, Yoshirou Kuromitsu, Yuichi IkuharaAbstract:Abstract Coincidence of reciprocal Lattice Point (CRLP) model was used to predict the stable orientation relationships of metal/α-Al 2 O 3 hetero interfaces from geometrical considerations. The predicted stable orientation relationships (ORs) between various metals and α-Al 2 O 3 agreed well with the experimentally observed ORs at the hetero interfaces fabricated by film growth processes. In the bcc metal/α-Al 2 O 3 systems with different fabrication processes such as internal oxidation, Burgers and Pitsch–Schrader ORs were experimentally observed, which have not been predicted as the most stable orientation relationships by CRLP. However, these ORs are predicted in CRLP as secondary stable orientations.
Christine Marie Montesa - One of the best experts on this subject based on the ideXlab platform.
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application of coincidence of reciprocal Lattice Point model to metal sapphire hetero interfaces
Materials Science and Engineering B-advanced Functional Solid-state Materials, 2010Co-Authors: Christine Marie Montesa, Naoya Shibata, Tetsuya Tohei, Kazuhiro Akiyama, Yoshirou Kuromitsu, Yuichi IkuharaAbstract:Abstract Coincidence of reciprocal Lattice Point (CRLP) model was used to predict the stable orientation relationships of metal/α-Al 2 O 3 hetero interfaces from geometrical considerations. The predicted stable orientation relationships (ORs) between various metals and α-Al 2 O 3 agreed well with the experimentally observed ORs at the hetero interfaces fabricated by film growth processes. In the bcc metal/α-Al 2 O 3 systems with different fabrication processes such as internal oxidation, Burgers and Pitsch–Schrader ORs were experimentally observed, which have not been predicted as the most stable orientation relationships by CRLP. However, these ORs are predicted in CRLP as secondary stable orientations.
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Application of coincidence of reciprocal Lattice Point model to metal/sapphire hetero interfaces
Materials Science and Engineering B-advanced Functional Solid-state Materials, 2009Co-Authors: Christine Marie Montesa, Naoya Shibata, Tetsuya Tohei, Kazuhiro Akiyama, Yoshirou Kuromitsu, Yuichi IkuharaAbstract:Abstract Coincidence of reciprocal Lattice Point (CRLP) model was used to predict the stable orientation relationships of metal/α-Al 2 O 3 hetero interfaces from geometrical considerations. The predicted stable orientation relationships (ORs) between various metals and α-Al 2 O 3 agreed well with the experimentally observed ORs at the hetero interfaces fabricated by film growth processes. In the bcc metal/α-Al 2 O 3 systems with different fabrication processes such as internal oxidation, Burgers and Pitsch–Schrader ORs were experimentally observed, which have not been predicted as the most stable orientation relationships by CRLP. However, these ORs are predicted in CRLP as secondary stable orientations.
I.v.l. Clarkson - One of the best experts on this subject based on the ideXlab platform.
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Polynomial-phase estimation, phase unwrapping and the nearest Lattice Point problem
2009 Conference Record of the Forty-Third Asilomar Conference on Signals Systems and Computers, 2009Co-Authors: Robby G. Mckilliam, I.v.l. Clarkson, Barry G. Quinn, Bill MoranAbstract:Polynomial-phase signals have attracted significant interest due to their applicability to radar, sonar, geophysics, and radio communication. In this paper we introduce a new technique for estimating the parameters of polynomial phase signals. The parameters are estimated by performing phase unwrapping in a least squares manner. The least squares problem is formulated as a nearest Lattice Point problem that can be solved using existing techniques. The statistical performance of the new estimator is excellent when compared with popular existing estimators such as those based on the discrete polynomial phase transform.
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ICASSP - Frequency estimation, phase unwrapping and the nearest Lattice Point problem
1999 IEEE International Conference on Acoustics Speech and Signal Processing. Proceedings. ICASSP99 (Cat. No.99CH36258), 1999Co-Authors: I.v.l. ClarksonAbstract:In this paper, we examine the relationship between frequency estimation and phase unwrapping and a problem in algorithmic number theory known as the nearest Lattice Point problem. After briefly reviewing the theory of these three topics, we introduce an interpretation of the maximum likelihood frequency estimation problem as a nearest Lattice Point problem. We develop an algorithm based on this approach and present numerical results to compare its performance with other estimation techniques. We find that the algorithm has good powers of estimation.
Yoshirou Kuromitsu - One of the best experts on this subject based on the ideXlab platform.
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application of coincidence of reciprocal Lattice Point model to metal sapphire hetero interfaces
Materials Science and Engineering B-advanced Functional Solid-state Materials, 2010Co-Authors: Christine Marie Montesa, Naoya Shibata, Tetsuya Tohei, Kazuhiro Akiyama, Yoshirou Kuromitsu, Yuichi IkuharaAbstract:Abstract Coincidence of reciprocal Lattice Point (CRLP) model was used to predict the stable orientation relationships of metal/α-Al 2 O 3 hetero interfaces from geometrical considerations. The predicted stable orientation relationships (ORs) between various metals and α-Al 2 O 3 agreed well with the experimentally observed ORs at the hetero interfaces fabricated by film growth processes. In the bcc metal/α-Al 2 O 3 systems with different fabrication processes such as internal oxidation, Burgers and Pitsch–Schrader ORs were experimentally observed, which have not been predicted as the most stable orientation relationships by CRLP. However, these ORs are predicted in CRLP as secondary stable orientations.
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Application of coincidence of reciprocal Lattice Point model to metal/sapphire hetero interfaces
Materials Science and Engineering B-advanced Functional Solid-state Materials, 2009Co-Authors: Christine Marie Montesa, Naoya Shibata, Tetsuya Tohei, Kazuhiro Akiyama, Yoshirou Kuromitsu, Yuichi IkuharaAbstract:Abstract Coincidence of reciprocal Lattice Point (CRLP) model was used to predict the stable orientation relationships of metal/α-Al 2 O 3 hetero interfaces from geometrical considerations. The predicted stable orientation relationships (ORs) between various metals and α-Al 2 O 3 agreed well with the experimentally observed ORs at the hetero interfaces fabricated by film growth processes. In the bcc metal/α-Al 2 O 3 systems with different fabrication processes such as internal oxidation, Burgers and Pitsch–Schrader ORs were experimentally observed, which have not been predicted as the most stable orientation relationships by CRLP. However, these ORs are predicted in CRLP as secondary stable orientations.