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Items where Author is "Carignan, Louis-Philippe"

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Number of items: 22.


Akhtari Zavareh, A., Kavanagh, K., Kasama, T., Carignan, L.-P., Yelon, A., Ménard, D., Herring, R., Dunin-Borkowski, R., & McCartney, M. (2012, July). Measuring the Magnetic Induction of Isolated CoFeB Nanowires by Off-Axis Electron Holography [Abstract]. 2012 Microscopy and Microanalysis Meeting (M&M 2012), Phoenix, Arizona, USA. Published in Microscopy and Microanalysis, 18(S2). External link


Bellemare, J., Carignan, L.-P., Sirois, F., & Ménard, D. (2015). Etching the oxide barrier of micrometer-scale self-organized porous anodic alumina membranes. Journal of The Electrochemical Society, 162(4), E47-E50. Available

Béron, F., Carignan, L.-P., Ménard, D., & Yelon, A. (2010). Extracting individual properties from global behaviour: First-order reversal curve method applied to magnetic nanowire arrays. In Lupu, N. (ed.), Electrodeposited nanowires and their applications (167-188). External link


Caloz, C., Sounas, D. L., Carignan, L.-P., Zhang, H., & Chamanara, N. (2013, September). Transparent graphene-based non-reciprocal devices magnetically biased with ferromagnetic nanowire metamaterials and electrically biased with frequency selective surfaces [Paper]. 7th International Congress on Advanced Electromagnetic Materials in Microwaves Optics (METAMATERIALS 2013), Talence, France. External link

Carignan, L.-P. (2012). Modélisation, développement et caractérisation de matériaux magnétiques à base de nanofils ferromagnétiques pour les technologies hyperfréquences [Ph.D. thesis, École Polytechnique de Montréal]. Available

Carignan, L.-P., Ménard, D., & Caloz, C. (2011, October). Ferromagnetic nanowire material electromagnetic and quantum devices [Paper]. 10th International Conference on Telecommunications in Modern Satellite, Cable and Broadcasting Services (TELSIKS 2011), Nis, Serbia. External link

Carignan, L.-P., Caloz, C., & Ménard, D. (2010, May). Dual-band integrated self-biased edge-mode isolator based on the double ferromagnetic resonance of a bistable nanowire substrate [Paper]. IEEE MTT-S International Microwave Symposium (IMS 2010), Anaheim, CA, United states. External link

Carignan, L.-P., Massicotte, M., Cochrane, R. W., & Ménard, D. (2008, June). Concept of signal rod compensation for low magnetic moment sample measurements with a vibrating sample magnetometer [Paper]. European magnetic sensors and actuators conference (EMSA 2008), Caen, France. Published in Sensor Letters, 7(3). External link

Carignan, L.-P., Lacroix, C., Ouimet, A., Ciureanu, M., Yelon, A., & Ménard, D. (2007). Magnetic anisotropy in arrays of Ni, CoFeB, and Ni/Cu nanowires. Journal of Applied Physics, 102(2), 023905. External link

Carignan, L.-P. (2006). Étude des interactions dipolaires magnétiques dans les réseaux de nanofils ferromagnétiques [Master's thesis, École Polytechnique de Montréal]. Available


Gupta, S., Carignan, L.-P., & Caloz, C. (2012). Group Delay Swing Enhancement in Transmission-Line All-Pass Networks Using Coupling and Dispersion Boosting Ferrimagnetic Substrate. Microwave and Optical Technology Letters, 54(3), 589-593. External link


Hussain, I., Carignan, L.-P., & Wu, K. (2023). Balanced Detection in Multiport Direct-Conversion Interferometric Receiver for IoT Systems. IEEE Systems Journal, 8 pages. External link


Liu, C.-M., Carignan, L.-P., & Wu, K. (2024). Hybrid Metallo-Dielectric Waveguide Architecture for Compact Low-Loss THz Applications. IEEE Microwave and Wireless Technology Letters, 3380445 (4 pages). External link

Liu, C.-M., Carignan, L.-P., & Wu, K. (2023). Substrate-Integrated Non-Radiative Dielectric (SINRD) Waveguide for THz Integrated Circuits and Systems. IEEE Transactions on Terahertz Science and Technology, 13(5), 454-463. External link

Liu, C.-M., Carignan, L.-P., Xiao, S., He, Y., & Wu, K. (2023). Substrate-Integrated Hybrid Metallo-Dielectric Waveguide Architecture for Millimeter-Wave and Terahertz Applications. IEEE Transactions on Microwave Theory and Techniques, 71(9), 3958-3967. External link


Nechache, R., Harnagea, C., Carignan, L.-P., Gautreau, O., Pintilie, L., Singh, M. P., Ménard, D., Fournier, P., Alexe, M., & Pignolet, A. (2009). Epitaxial thin films of the multiferroic double perovskite Bi₂FeCrO₆ grown on (100)-oriented SrTiO₃ substrates: growth, characterization, and optimization. Journal of Applied Physics, 105(6), 061621. External link

Nechache, R., Carignan, L.-P., Gunawan, L., Harnagea, C., Botton, G. A., Ménard, D., & Pignolet, A. (2007). Epitaxial Thin Films of Multiferroic Bi₂FeFrO₆ With B-Site Cationic Order. Journal of Materials Research, 22(8), 2102-2110. External link

Nechache, R., Harnagea, C., Carignan, L.-P., Ménard, D., Gunawan, L., Botton, G. A., & Pignolet, A. (2007, May). Growth, Structure and Properties of BiFeO3-BiCrO3 Films obtained by dual cross beam PLD [Paper]. 16th IEEE International Symposium on the Applications of Ferroelectrics, Nara, Japan. External link

Nechache, R., Harnagea, C., Gunawan, L., Carignan, L.-P., Maunders, C., Ménard, D., Botton, G. A., & Pignolet, A. (2007). Growth, Structure, and Properties of BiFeO₃-BiCrO₃ Films Obtained by Dual Cross Beam Pld. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, 54(12), 2645-2652. External link

Nechache, R., Harnagea, C., Pignolet, A., Normandin, F., Veres, T., Carignan, L.-P., & Ménard, D. (2006). Growth, structure, and properties of epitaxial thin films of first-principles predicted multiferroic Bi₂FeCrO₆. Applied Physics Letters, 89(10), 2902-2902. External link


Sarkar, B., Li, X., Quenneville, E., Carignan, L.-P., Wu, K., & Cicoira, F. (2021). Lightweight and flexible conducting polymer sponges and hydrogels for electromagnetic interference shielding. Journal of Materials Chemistry C, 9(46), 16558-16565. External link

Sounas, D. L., Carignan, L.-P., & Caloz, C. (2012, September). New opportunities in electromagnetics with nanotechnologies [Paper]. 14th International Conference on Electromagnetics in Advanced Applications (ICEAA 2012), Cape Town, South africa. External link

List generated on: Fri May 24 19:04:05 2024 EDT