Moody, G., Sorger, V. J., Blumenthal, D. J., Juodawlkis, P. W., Loh, W., Sorace-Agaskar, C., ... Camacho, R. M.
(2022).2022 Roadmap on integrated quantum photonics. JPhys Photonics.
4(1), 012501-012501.
Aiello, A., Agarwal, G. S., Par, M., Stoklasa, B., Hradil, Z., ehek, J., ... Snchez-Soto, L. L.
(2017).Unraveling beam self-healing. Optics Express.
25(16), 19147-19157.
Sperling, J., Clements, W. R., Eckstein, A., Moore, M., Renema, J. J., Kolthammer, W. S., ... Walmsley, I. A.
(2017).Detector-Independent Verification of Quantum Light. Physical Review Letters.
118(16), 163602.
Ariunbold, G. O., Agarwal, G. S., Wang, Z., Scully, M. O., & Walther, H.
(2004).Nanosecond dynamics of single-molecule fluorescence resonance energy transfer. The Journal of Physical Chemistry A: Isolated Molecules, Clusters, Radicals, and Ions; Environmental Chemistry, Geochemistry, and Astrochemistry; Theory.
108(13), 2402-2404.
Agarwal, G. S., Scully, M. O., & Walther, H.
(2001).Accelerating decay by multiple 2 pi pulses. Physical Review A: Atomic, Molecular and Optical Physics.
63(4), 044101-3.
Agarwal, G. S., Scully, M. O., & Walther, H.
(2001).Accelerating decay by multiple 2 pulses. Physical Review A: Atomic, Molecular and Optical Physics.
63(4), 441011-441013.
Arun, R., Agarwal, G. S., Scully, M. O., & Walther, H.
(2000).Mazer action in a bimodal cavity. Physical Review A: Atomic, Molecular and Optical Physics.
62(2), 023809-12.
Arun, R., Agarwal, G. S., Scully, M. O., & Walther, H.
(2000).Mazer action in a bimodal cavity. Physical Review A: Atomic, Molecular and Optical Physics.
62(2), 023809-023801.
Home, D., & Agarwal, G. S.
(1995).Quantum nonlocality of single photon states. Physics Letters A: General Physics, Nonlinear Science, Statistical Physics, Atomic, Molecular and Cluster Physics, Plasma and Fluid Physics, Condensed Matter, Cross-disciplinary Physics, Biological Physics, Nanosciences, Quantum Physics.
209(1-2), 1-5.
Agarwal, G. S.
(1995).Interference in complementary spaces. Foundations of Physics: an international journal devoted to the conceptual and fundamental theories of modern physics, biophysics, and cosmology.
25(2), 219-228.
Boyd, R. W., Agarwal, G. S., Davis, W. V., Gaeta, A. L., Nagasako, E. M., & Kauranen, M.
(1994).Quantum Noise Characteristics of Nonlinear Optical Amplifiers. Acta Physica Polonica, Series A: General Physics, Physics of Condensed Matter, Optics and Quantum Electrodynamics.
86(1-2), 117-126.
Ghose, P., Home, D., & Agarwal, G. S.
(1991).An experiment to throw more light on light. Physics Letters A: General Physics, Nonlinear Science, Statistical Physics, Atomic, Molecular and Cluster Physics, Plasma and Fluid Physics, Condensed Matter, Cross-disciplinary Physics, Biological Physics, Nanosciences, Quantum Physics.
153(8-9), 403-406.
Wolf, E., & Agarwal, G. S.
(1984).Coherence theory of laser resonator modes. Journal of the Optical Society of America A: Optics, Image Science and Vision.
1(5), 541-541.
Agarwal, G. S.
(1973).Quantum statistical theory of coherent emission from a system of multi-level atoms. Physics Letters A: General Physics, Nonlinear Science, Statistical Physics, Atomic, Molecular and Cluster Physics, Plasma and Fluid Physics, Condensed Matter, Cross-disciplinary Physics, Biological Physics, Nanosciences, Quantum Physics.
45(1), 15-17.
Agarwal, G. S., & Wolf, E.
(1968).Ordering theorems and generalized phase space distributions. Physics Letters A: General Physics, Nonlinear Science, Statistical Physics, Atomic, Molecular and Cluster Physics, Plasma and Fluid Physics, Condensed Matter, Cross-disciplinary Physics, Biological Physics, Nanosciences, Quantum Physics.
26(10), 485-486.
book
Agarwal, G. S.
(2012).Quantum Optics. Cambridge University Press (CUP).
Agarwal, G.
(2009).Foreword. BENTHAM SCIENCE PUBLISHERS.
Agarwal, G., Schleich, W., Rempe, G., & Scully, M.
(2006).Preface. Ed. 53.
Elsevier.
chapter
Wang, D., & Agarwal, G. S.
(2023).Quantum Properties of Light. Springer Handbook of Atomic, Molecular, and Optical Physics.
(pp. 1189-1205).
Springer Nature.
Agarwal, G. S.
(1983).Wave propagation in random media. Lecture Notes in Physics.
Stochastic Processes Formalism and Applications.
(pp. 319-324).
Springer Nature.
Rana, G., Deshmukh, P., Palkhivala, S., Duttagupta, S. P., Prabhu, S. S., Achanta, V. G., & Agarwal, G. S.
(2016).Controlling the Dark Quadrupole Modes in Dolmen Structures. International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz.
1-2.
Thiel, C., Bastin, T., Martin, J., Solano, E., von Zanthier, J., & Agarwal, G. S.
(2007).Quantum imaging with incoherent photons. Physical Review Letters.
133603.
von Zanthier, J., Thiel, C., Bastin, T., Solano, E., & Agarwal, G. S.
(2007).Quantum Imaging with Incoherent Photons. Optics InfoBase Conference Papers.
1-2.
Von Zanthier, J., Thiel, C., Bastin, T., Solano, E., & Agarwal, G. S.
(2007).Quantum Imaging with Incoherent Photons. Optics InfoBase Conference Papers.
1-2.
von Zanthier, J., Thiel, C. h., Bastin, T. h., Solano, E., & Agarwal, G. S.
(2007).Quantum Imaging with Incoherent Photons. Optics InfoBase Conference Papers.
ithc3.