Zobrazeno 1 - 10
of 90
pro vyhledávání: '"Daniels Kevin M."'
Autor:
El Fatimy Abdel, Nath Anindya, Kong Byoung Don, Boyd Anthony K., Myers-Ward Rachael L., Daniels Kevin M., Jadidi M. Mehdi, Murphy Thomas E., Gaskill D. Kurt, Barbara Paola
Publikováno v:
Nanophotonics, Vol 7, Iss 4, Pp 735-740 (2018)
Graphene is an ideal material for hot-electron bolometers due to its low heat capacity and weak electron-phonon coupling. Nanostructuring graphene with quantum-dot constrictions yields detectors of electromagnetic radiation with extraordinarily high
Externí odkaz:
https://doaj.org/article/e703dd67b0f246399783c493f89760b9
Autor:
Grubišić-Čabo, Antonija, Kotsakidis, Jimmy C., Yin, Yuefeng, Tadich, Anton, Haldon, Matthew, Solari, Sean, Riley, John, Huwald, Eric, Daniels, Kevin M., Myers-Ward, Rachael L., Edmonds, Mark T., Medhekar, Nikhil, Gaskill, D. Kurt, Fuhrer, Michael S.
We study quasi-freestanding bilayer graphene on silicon carbide intercalated by calcium. The intercalation, and subsequent changes to the system, were investigated by low-energy electron diffraction, angle-resolved photoemission spectroscopy (ARPES)
Externí odkaz:
http://arxiv.org/abs/2311.02528
Autor:
Kotsakidis, Jimmy C., Currie, Marc, Grubišić-Čabo, Antonija, Tadich, Anton, Myers-Ward, Rachael L., DeJarld, Matthew, Daniels, Kevin M., Liu, Chang, Edmonds, Mark T., de Parga, Amadeo L. Vázquez, Fuhrer, Michael S., Gaskill, D. Kurt
Publikováno v:
Advanced Materials Interfaces 8.23 (2021): 2101598
Magnesium intercalated 'quasi-freestanding' bilayer graphene on 6H-SiC(0001) (Mg-QFSBLG) has many favorable properties (e.g., highly n-type doped, relatively stable in ambient conditions). However, intercalation of Mg underneath monolayer graphene is
Externí odkaz:
http://arxiv.org/abs/2307.15214
Autor:
Han, Jeong Woo, Sai, Pavlo, But, Dmytro, Uykur, Ece, Winnerl, Stephan, Kumar, Gagan, Chin, Matthew L., Myers-Ward, Rachael L., Dejarld, Matthew T., Daniels, Kevin M., Murphy, Thomas E., Knap, Wojciech, Mittendorff, Martin
Publikováno v:
Nature Communications 14, 7493 (2023)
Strong circularly polarized excitation opens up the possibility to generate and control effective magnetic fields in solid state systems, e.g., via the optical inverse Faraday effect or the phonon inverse Faraday effect. While these effects rely on m
Externí odkaz:
http://arxiv.org/abs/2307.04512
Autor:
Pedowitz, Michael, Lewis, Daniel, DeMell, Jennifer, Pennachio, Daniel J., Hajzus, Jenifer R., Myers-Ward, Rachael, Kim, Soaram, Daniels, Kevin M.
Publikováno v:
In Materials Today Advances March 2024 21
Autor:
Grubišić-Čabo, Antonija, Kotsakidis, Jimmy C., Yin, Yuefeng, Tadich, Anton, Haldon, Matthew, Solari, Sean, di Bernardo, Iolanda, Daniels, Kevin M., Riley, John, Huwald, Eric, Edmonds, Mark T., Myers-Ward, Rachael, Medhekar, Nikhil V., Gaskill, D. Kurt, Fuhrer, Michael S.
We use angle-resolved photoemission spectroscopy to investigate the electronic structure of bilayer graphene at high n-doping and extreme displacement fields, created by intercalating epitaxial monolayer graphene on silicon carbide with magnesium to
Externí odkaz:
http://arxiv.org/abs/2005.02670
Autor:
Kotsakidis, Jimmy C., Grubišić-Čabo, Antonija, Yin, Yuefeng, Tadich, Anton, Myers-Ward, Rachael L., Dejarld, Matthew, Pavunny, Shojan P., Currie, Marc, Daniels, Kevin M., Liu, Chang, Edmonds, Mark T., Medhekar, Nikhil V., Gaskill, D. Kurt, de Parga, Amadeo L. Vazquez, Fuhrer, Michael S.
The intercalation of epitaxial graphene on SiC(0001) with Ca has been studied extensively, yet precisely where the Ca resides remains elusive. Furthermore, the intercalation of Mg underneath epitaxial graphene on SiC(0001) has not been reported. Here
Externí odkaz:
http://arxiv.org/abs/2004.01383
Autor:
Aaroe, Ashley, Aloia, Thomas A., Andrews, Lee, II, Badami, Kiran K., Baganz, Janna A., Bajwa, Pratibha, Baker, Lori R., Barbosa, Gregory R., Beird, Hannah C., Bourgeois, Matt, Brock, Kristy, Burton, Elizabeth M., Cata, Juan, Chung, Caroline, Cutherell, Michael, Cuenca, John A., Cyr, Pierre B., Dabaja, Bouthaina, Dagher, Hiba, Daniels, Kevin M., Domask, Mary, Draetta, Giulio, Fisher, Sarah, French, Katy Elizabeth, Futreal, Andrew, Gaeta, Maria, Gibbons, Christopher, Godoy, Myrna, Goldstein, Drew, Gunther, Jillian, Hernandez, Cristhiam, Hutcheson, Kate, Jaffray, David, Jin, Jeff, John, Teny Matthew, Kell, Trey, Knafl, Mark, Kothari, Anai, Kwan, Rayson C., Lee, J. Jack, Liao, Yue, Litton, Jennifer, Liu, Alex, McEnery, Kevin W., McGuire, Mary, Musunuru, Tego, Muthu, Mayoora, Nates, Joseph L., Owen, Craig S., Padmakumar, Priyadharshini, Page, Melody, Palaskas, Nicholas, Patel, Jay J., Prabhakaran, Sabitha, Ravi, Vinod, Russell, Ludivine, Sajith, Bilja, Scheet, Paul A., Schmidt, Stephanie, Shaw, Kenna R., Shete, Sanjay, Shoenthal, Daniel P., Stoltenberg, Lessley J., Subbiah, Ishwaria, Suitor, Chuck, Tawbi, Hussein, Thompson, Phillip, Turin, Anastasia, Unni, Samir, Vicknamparampil, Benju, Weber, Max C., Weinstein, John, Williams, Zoe, Woodman, Scott E., Wozny, Mark C., Wu, Carol, Wu, Jia, Yao, James C., Young, Chingyi, Yu, Emily, Zatorski, Steven, Reddy, Dereddi Raja, Botdorf, Joshua, Hanmandlu, Ankit, Wegner, Robert, Crommett, John, Gutierrez, Cristina, Rathi, Nisha, Abbas, Hussein A.
Publikováno v:
In Mayo Clinic Proceedings March 2023 98(3):451-457
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Autor:
Kim, Soaram, Yoo, Byungseok, Miller, Matthew, Bowen, David, Pines, Darryll J., Daniels, Kevin M.
Publikováno v:
In Sensors and Actuators: A. Physical 1 August 2022 342