[13] Y. Yu, M. Heuck, H. Hu, W. Xue, C. Peucheret, Y. Chen, L. K. Oxenløwe, K. Yvind y J. Mørk. Fano
resonance control in a photonic crystal structure and its application to ultrafast switching. Appl. Phys.
Lett. 105, 061117 (2014).
[14] S. M. A. Mostaan y H. R. Saghai. Optical bistable switch based on the nonlinear Kerr effect of chalco-
genide glass in a rectangular defect of a photonic crystal. J. Comput. Electron. 18, 1450-1454 (2019).
[15] A. Shinya, S. Matsuo, Yosia, T. Tanabe, E. Kuramochi, T. Sato, T. Kakitsuka y M. Notomi. All-optical
on-chip bit memory based on ultra high Q InGaAsP photonic crystal. Opt. Express 16, 19382-19387
(2008).
[16] J. Sakaguchi, T. Katayama y H. Kawaguchi. All-optical memory operation of 980-nm polarization bis-
table VCSEL for 20-Gb/s PRBS RZ and 40-Gb/s NRZ data signals. Opt. Express 18, 12362-12370
(2010).
[17] E. Kuramochi, K. Nozaki, A. Shinya, K. Takeda, T. Sato, S. Matsuo, H. Taniyama, H. Sumikura y M.
Notomi. Large-scale integration of wavelength-addressable all-optical memories on a photonic crystal
chip. Nat. Photon. 8, 474-481 (2014).
[18] M. F. Yanik, S. Fan, M. Soljaˇ
ci´
c y J. D. Joannopoulos. All-optical transistor action with bistable swit-
ching in a photonic crystal cross-waveguide geometry. Opt. Lett. 28, 2506-2508 (2003).
[19] P. Sesin, P. Soubelet, V. Villafañe, A. E. Bruchhausen, B. Jusserand, A. Lemaître, N. D. Lanzillotti-
Kimura y A. Fainstein. Dynamical optical tuning of the coherent phonon detection sensitivity in DBR-
based GaAs optomechanical resonators. Phys. Rev. B 92, 075307 (2015).
[20] S. Anguiano, A. E. Bruchhausen, B. Jusserand, I. Favero, F. R. Lamberti, L. Lanco, I. Sagnes, A. Lemaî-
tre, N. D. Lanzillotti-Kimura, P. Senellart y A. Fainstein. Micropillar Resonators for Optomechanics in
the Extremely High 19–95-GHz Frequency Range. Phys. Rev. Lett. 118, 263901 (2017).
[21] H. Thyrrestrup, E. Yüce, G. Ctistis, J. Claudon, W. L. Vos y J.-M. Gérard. Differential ultrafast all-optical
switching of the resonances of a micropillar cavity. Appl. Phys. Lett. 105, 111115 (2014).
[22] S. Anguiano, A. E. Bruchhausen, I. Favero, I. Sagnes, A. Lemaître, N. D. Lanzillotti-Kimura y A. Fains-
tein. Optical cavity mode dynamics and coherent phonon generation in high-Qmicropillar resonators.
Phys. Rev. A 98, 013816 (2018).
[23] A. Fainstein, N. D. Lanzillotti-Kimura, B. Jusserand y B. Perrin. Strong Optical-Mechanical Coupling in
a Vertical GaAs/AlAs Microcavity for Subterahertz Phonons and Near-Infrared Light. Phys. Rev. Lett.
110, 037403 (2013).
[24] D. Pellat, R. Azoulay, G. Leroux, L. Dugrand, Y. Rafflé, R. Kuszelewicz y J. L. Oudar. Optical bista-
bility at 980 nm in a strained InGaAs/GaAs multiple quantum well microcavity with resonant periodic
nonlinearity. Appl. Phys. Lett. 62, 2489-2491 (1993).
[25] M. Gurioli, L. Cavigli, G. Khitrova y H. M. Gibbs. Bistable optical response in quantum well semicon-
ductor microcavity. Semicond. Sci. Technol. 19, S345-S347 (2004).
[26] D. Navarro-Urrios, N. E. Capuj, M. F. Colombano, P. D. García, M. Sledzinska, F. Alzina, A. Griol, A.
Martínez y C. M. Sotomayor-Torres. Nonlinear dynamics and chaos in an optomechanical beam. Nat.
Commun. 8(2017).
[27] S. Anguiano, A. A. Reynoso, A. E. Bruchhausen, A. Lemaître, J. Bloch y A. Fainstein. Three-dimensional
trapping of light with light in semiconductor planar microcavities. Phys. Rev. B 99, 195308 (2019).
9