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Number of items: 34.

A

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AGNEW, G., GRIER, A., TAIMRE, T., LIM, Y. L., NIKOLIĆ, M., VALAVANIS, A., COOPER, J., DEAN, P., KHANNA, S. P., LACHAB, M., LINFIELD, E. H., DAVIES, A. G., HARRISON, Paul, IKONIĆ, Z., INDJIN, D. and RAKIĆ, A. D. (2015). Efficient prediction of terahertz quantum cascade laser dynamics from steady-state simulations. Applied Physics Letters, 106 (16), p. 161105. [Article]

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ALLWOOD, Dan A., ELLIS, Matthew O.A., GRIFFIN, David, HAYWARD, Thomas J., MANNESCHI, Luca, MUSAMEH, Mohammad, O'KEEFE, Simon, STEPNEY, Susan, SWINDELLS, Charles, TREFZER, Martin A., VASILAKI, Eleni, VENKAT, Guru, VIDAMOUR, Ian and WRINGE, Chester (2023). A perspective on physical reservoir computing with nanomagnetic devices. Applied Physics Letters, 122 (4). [Article]

ANDERSSON, J., EHIASARIAN, A. P. and ANDERS, A. (2008). Observation of Ti4+ ions in a high power impulse magnetron sputtering plasma. Applied Physics Letters, 93 (7). [Article]

ANDERSSON, Joakim, EHIASARIAN, Arutiun and ANDERS, Andre (2008). Observation of Ti4+ ions in a high power impulse magnetron sputtering plasma. Applied Physics Letters, 93, 071504. [Article]

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ARMSTRONG, Steven, MCHALE, Glen, ALDERSON, Andrew, MANDHANI, Shruti, MEYARI, Mahya, WELLS, Gary G, CARTER, Emma, LEDESMA-AGUILAR, Rodrigo and SEMPREBON, Ciro (2023). Wetting transitions on superhydrophobic auxetic metamaterials. Applied Physics Letters, 123: 151601. [Article]

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ATXITIA, U and OSTLER, Thomas (2018). Ultrafast double magnetization switching in GdFeCo with two picosecond-delayed femtosecond pump pulses. Applied Physics Letters, 113 (6), 062402. [Article]

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ATXITIA, U., OSTLER, Thomas, CHANTRELL, R. W. and CHUBYKALO-FESENKO, O. (2015). Optimal electron, phonon, and magnetic characteristics for low energy thermally induced magnetization switching. Applied Physics Letters, 107 (19), p. 192402. [Article]

C

CHOW, W. W., PEREIRA, Mauro and KOCH, S. W. (1992). Many-body treatment on the modulation response in a strained quantum well semiconductor laser medium. Applied Physics Letters, 61 (7), p. 758. [Article]

E

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EHIASARIAN, Arutiun, HECIMOVIC, A., DE LOS ARCOS, T., NEW, Roger, DER GATHEN, V. Schulz-von, BOKE, M. and WINTER, J. (2012). High power impulse magnetron sputtering discharges: Instabilities and plasma self-organization. Applied Physics Letters, 100 (11), p. 114101. [Article]

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EVANS, Richard F. L., OSTLER, Thomas, CHANTRELL, Roy W., RADU, Ilie and RASING, Theo (2014). Ultrafast thermally induced magnetic switching in synthetic ferrimagnets. Applied Physics Letters, 104 (8), 082410. [Article]

F

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FAN, Yongbo, WANG, Xinzhen, LI, Hongtian, FETEIRA, Antonio, WANG, Dawei, WANG, Ge, SINCLAIR, Derek C. and REANEY, Ian M. (2023). Pb, Bi, and rare earth free X6R barium titanate–sodium niobate ceramics for high voltage capacitor applications. Applied Physics Letters, 122 (14): 143901. [Article]

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FERNANDES PEREIRA, Mauro (2016). The linewidth enhancement factor of intersubband lasers: from a two-level limit to gain without inversion conditions. Applied Physics Letters, 109 (22), p. 222102. [Article]

FERRARELLI, Matthew C., ADAMS, Timothy B., FETEIRA, Antonio, SINCLAIR, Derek C. and WEST, Anthony R. (2006). High intrinsic permittivity in Na[sub 1∕2] Bi[sub 1∕2] Cu[sub 3] Ti[sub 4] O[sub 12]. Applied Physics Letters, 89 (21), p. 212904. [Article]

G

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GUO, Jianglong, BAMBER, Thomas, SINGH, Jatinder, MANBY, David, BINGHAM, Paul, JUSTHAM, Laura, PETZING, Jon, PENDERS, Jacques and JACKSON, Michael (2017). Experimental study of a flexible and environmentally stable electroadhesive device. Applied Physics Letters, 111 (25), p. 251603. [Article]

J

JIN, R., OKADA, K., KHITROVA, G., GIBBS, H. M., PEREIRA, Mauro, KOCH, S. W. and PEYGHAMBARIAN, N. (1992). Optical nonlinearities in strained-layer InGaAs/GaAs multiple quantum wells. Applied Physics Letters, 61 (15), p. 1745. [Article]

K

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KHESRO, Amir, WANG, Dawei, HUSSAIN, Fayaz, SINCLAIR, Derek, FETEIRA, Antonio and REANEY, Ian (2016). Temperature Stable and Fatigue Resistant lead-free ceramics for actuators. Applied Physics Letters, 109 (14), p. 142907. [Article]

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LI, Ming, FETEIRA, Antonio, SINCLAIR, Derek C. and WEST, Anthony R. (2007). Incipient ferroelectricity and microwave dielectric resonance properties of CaCu[sub 2.85]Mn[sub 0.15]Ti[sub 4]O[sub 12] ceramics. Applied Physics Letters, 91 (13), p. 132911. [Article]

LI, Ming, FETEIRA, Antonio, SINCLAIR, Derek C. and WEST, Anthony R. (2006). Influence of Mn doping on the semiconducting properties of CaCu3Ti4O12 ceramics. Applied Physics Letters, 88 (23), p. 232903. [Article]

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LU, Xangyang, ZOU, Xiao, HINZKE, Denise, LIU, Tao, WANG, Yichuan, CHENG, Tuyan, WU, Jing, OSTLER, Thomas, CAI, Jianwang, NOWAK, Ulrich, CHANTRELL, Roy, ZHAI, Ya and XU, Yongbing (2018). Roles of heating and helicity in ultrafast all-optical magnetization switching in TbFeCo. Applied Physics Letters, 113 (3), 032405. [Article]

LUISMAN, Luke, FETEIRA, Antonio and REICHMANN, Klaus (2011). Weak-relaxor behaviour in Bi/Yb-doped KNbO3 ceramics. Applied Physics Letters, 99 (19), p. 192901. [Article]

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PASCUAL-GONZALEZ, Cristina, SCHILEO, Giorgio and FETEIRA, Antonio (2016). Band gap narrowing in ferroelectric KNbO3-Bi(Yb,Me)O3 (Me=Fe or Mn) ceramics. Applied Physics Letters, 109 (13). [Article]

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PASCUAL-GONZALEZ, Cristina, SCHILEO, Giorgio, MURAKAMI, Shunsuke, KHESRO, Amir, WANG, Dawei, REANEY, Ian and FETEIRA, Antonio (2017). Continuously controllable optical band gap in orthorhombic ferroelectric KNbO3-BiFeO3 ceramics. Applied Physics Letters, 110 (17). [Article]

PASHA, U. M., ZHENG, H., THAKUR, O. P., FETEIRA, Antonio, WHITTLE, K. R., SINCLAIR, D. C. and REANEY, I. M. (2007). In situ Raman spectroscopy of A-site doped barium titanate. Applied Physics Letters, 91 (6), 062908. [Article]

PEREIRA, Mauro, BINDER, R. and KOCH, S. W. (1994). Theory of nonlinear optical absorption in coupled-band quantum wells with many-body effects. Applied Physics Letters, 64 (3), p. 279. [Article]

PEREIRA, Mauro, KOCH, S. W. and CHOW, W. W. (1991). Many-body effects in the gain spectra of strained quantum wells. Applied Physics Letters, 59 (23), p. 2941. [Article]

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PEREIRA, Mauro and TOMIĆ, Stanko (2011). Intersubband gain without global inversion through dilute nitride band engineering. Applied Physics Letters, 98 (6), 061101. [Article]

PEREIRA, Mauro and TOMIĆ, Stanko (2011). Intersubband gain without global inversion through dilute nitride band engineering. Applied Physics Letters, 98 (6), 061101. [Article]

R

RAWAL, Ritesh, MCQUEEN, Andrew J., GILLIE, Lisa J., HYATT, Neil C., MCCABE, Emma E, SAMARA, Kumaravinothan, ALFORD, Neil McN., FETEIRA, Antonio, REANEY, Ian M. and SINCLAIR, Derek C. (2009). Influence of octahedral tilting on the microwave dielectric properties of A[sub 3]LaNb[sub 3]O[sub 12] hexagonal perovskites (A=Ba, Sr). Applied Physics Letters, 94 (19), p. 192904. [Article]

S

SCHMIELAU, T. and PEREIRA, M. F. (2009). Nonequilibrium many body theory for quantum transport in terahertz quantum cascade lasers. Applied Physics Letters, 95 (23). [Article]

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THOMAS, C. B. and CRANTON, Wayne (1993). High efficiency ZnS:Mn ac thin film electroluminescent device structure. Applied Physics Letters, 63 (23), 3119-3121. [Article]

W

WENZEL, H., KLEHR, A., ERBERT, G., SEBASTIAN, J., TRÄNKLE, G. and PEREIRA, Mauro (2000). Effect of band gap renormalization on threshold current and efficiency of a distributed Bragg reflector laser. Applied Physics Letters, 76 (19), 2653-2655. [Article]

WENZEL, H., KLEHR, A., ERBERT, G., SEBASTIAN, J., TRÄNKLE, G. and PEREIRA, Mauro (2000). Effect of band gap renormalization on threshold current and efficiency of a distributed Bragg reflector laser. Applied Physics Letters, 76 (19), p. 2653. [Article]

Z

ZHANG, Lei, THAKUR, Om Prakash, FETEIRA, Antonio, KEITH, Gillian M., MOULD, Andrew G., SINCLAIR, Derek C. and WEST, Anthony R. (2007). Comment on the use of calcium as a dopant in X8R BaTiO[sub 3]-based ceramics. Applied Physics Letters, 90 (14), p. 142914. [Article]

ZHOU, Changrong, FETEIRA, Antonio, SHAN, Xu, YANG, Huabin, ZHOU, Qin, CHENG, Jun, LI, Weizhou and WANG, Hua (2012). Remarkably high-temperature stable piezoelectric properties of Bi(Mg0.5Ti0.5)O3 modified BiFeO3-BaTiO3 ceramics. Applied Physics Letters, 101 (3), 032901. [Article]

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