Halide Perovskite Lasers -  Huajun He,  Mingjie Li,  Tze Chien Sum,  Yong Kang Eugene Tay,  Xiangling Tian

Halide Perovskite Lasers (eBook)

eBook Download: PDF
2022 | 1. Auflage
VIII, 126 Seiten
Springer Nature Singapore (Verlag)
978-981-16-7973-5 (ISBN)
Systemvoraussetzungen
96,29 inkl. MwSt
  • Download sofort lieferbar
  • Zahlungsarten anzeigen

This book highlights the rapidly emerging field of solution-processed halide perovskite lasers. These amazing materials not only possess exceptional photovoltaic properties, but are also outstanding optical gain media. Halide perovskites are the latest member of solution-processed optical gain media, joining organics and traditional semiconductor colloidal quantum dots. Amplified spontaneous emission and lasing have been demonstrated in various halide perovskite configurations and nanostructures with wavelengths tunable over the visible and infrared wavelengths (400-1000 nm).

This book provides comprehensive information on perovskite lasing, starting with some fundamentals of lasers and their basic operating principles. Unambiguous methods for identifying lasing light emission are presented, while the basic optoelectronic properties of perovskite materials are also discussed, with an emphasis on their photophysics, using ultrafast optical spectroscopy techniques. The viability of perovskites as a gain media within a suitable resonator, as well as the characterization methods for optical gain, are highlighted. The book closes with a discussion on the remaining challenges (such as electrical driven lasing and material stabilities) that need to be tackled, and the future of this new family of lasers.



Yong Kang Eugene Tay received his B.Sc. (2015) degree and Ph.D. (2020) in Physics from Nanyang Technological University, (NTU), Singapore, where he pursued his Ph.D. under the supervision of Prof. Tze Chien Sum. Eugene is presently a Research Engineer at KLA-Tencor. His research interests include ultrafast spectroscopy study of photophysics in semiconductor and perovskite nanostructures with a focus on colloidal nanocrystals; charge carrier dynamics in light emission; optical gain and lasing.

Huajun He received his B.Sc. (2014) in Materials Science and Engineering (MSE) and honorary certificate of Chu Kochen Honors College from Zhejiang University (ZJU), China, and his Ph.D. (2019) degree in MSE from ZJU, China. He is currently working as a research fellow supervised by Prof. Tze Chien Sum in NTU Singapore. His research interests include advanced imaging materials with a focus on aqueous colloidal nanocrystals and metal-organic frameworks; ultrafast spectroscopy study of photophysics in photonic funtioncal materials; multiphoton excitation, optical gain and lasing

Xiangling Tian received his B.Sc. (2010) in Physics from Qufu Normal University, China, M.Sc. (2013) in Condensed Matter Physics from Zhejiang Normal University, China and Ph.D. (2018) degree in Materials Science and Engineering from South China University of Technology, China. He was a research fellow supervised by Prof. Tze Chien Sum in NTU Singapore. His research interests include light-matter interactions, photonic/plasmonic nanolasers, laser spectroscopy and novel physical phenomena emerging in nanoscale structures.

Mingjie Li received his B.Sc. (2006) and M.Sc. (2009) degrees in Physics from Lanzhou University, China, and his Ph.D. (2013) degree under the supervision of Prof. Tze Chien Sum in Physics and Applied Physics from NTU, Singapore. He is currently an Assistant Professor at the Department of Applied Physics at The Hong Kong Polytechnic University. His research interests include ultrafast spectroscopy study of photophysics in semiconductor and perovskite nanostructures; charge carrier dynamics in light harvesting, emitting and lasing materials and devices.

Tze Chien Sum received his B.Sc. (1999), M.Sc. (2000) and Ph.D. (2005) degrees in Physics from the National University of Singapore. He is presently a Professor of Physics at the NTU's School of Physical and Mathematical Sciences (SPMS), where he leads the Femtosecond Dynamics Laboratory. He holds dual appointments of the Director of Institute of Advanced Studies and the Associate Dean (Research), College of Science. His current research focuses on investigating light-matter interactions; energy and charge transfer mechanisms; and probing carrier and quasi-particle dynamics in a broad range of emergent nanoscale, light harvesting and light emitting systems.


This book highlights the rapidly emerging field of solution-processed halide perovskite lasers. These amazing materials not only possess exceptional photovoltaic properties, but are also outstanding optical gain media. Halide perovskites are the latest member of solution-processed optical gain media, joining organics and traditional semiconductor colloidal quantum dots. Amplified spontaneous emission and lasing have been demonstrated in various halide perovskite configurations and nanostructures with wavelengths tunable over the visible and infrared wavelengths (400-1000 nm).This book provides comprehensive information on perovskite lasing, starting with some fundamentals of lasers and their basic operating principles. Unambiguous methods for identifying lasing light emission are presented, while the basic optoelectronic properties of perovskite materials are also discussed, with an emphasis on their photophysics, using ultrafast optical spectroscopy techniques. The viabilityof perovskites as a gain media within a suitable resonator, as well as the characterization methods for optical gain, are highlighted. The book closes with a discussion on the remaining challenges (such as electrical driven lasing and material stabilities) that need to be tackled, and the future of this new family of lasers.
Erscheint lt. Verlag 9.5.2022
Reihe/Serie Nanoscience and Nanotechnology
SpringerBriefs in Applied Sciences and Technology
Zusatzinfo VIII, 126 p. 82 illus., 80 illus. in color.
Sprache englisch
Themenwelt Naturwissenschaften Physik / Astronomie Optik
Technik Elektrotechnik / Energietechnik
Schlagworte Distributed Feedback Bragg (DFB) Lasing • Intraband Carrier Dynamics • Lasing Light Emission • optical gain media • optoelectronic properties • Perovskite Photon Lasing • quantum confinement • Semiconductor Colloidal Quantum Dots • Spatial Coherence • Spontaneous Emission • Temporal Coherence • Ultrafast Optical Spectroscopy • Wavelengths Tunable • Whispering Gallery Mode (WGM) Lasing
ISBN-10 981-16-7973-8 / 9811679738
ISBN-13 978-981-16-7973-5 / 9789811679735
Haben Sie eine Frage zum Produkt?
PDFPDF (Wasserzeichen)
Größe: 5,9 MB

DRM: Digitales Wasserzeichen
Dieses eBook enthält ein digitales Wasser­zeichen und ist damit für Sie persona­lisiert. Bei einer missbräuch­lichen Weiter­gabe des eBooks an Dritte ist eine Rück­ver­folgung an die Quelle möglich.

Dateiformat: PDF (Portable Document Format)
Mit einem festen Seiten­layout eignet sich die PDF besonders für Fach­bücher mit Spalten, Tabellen und Abbild­ungen. Eine PDF kann auf fast allen Geräten ange­zeigt werden, ist aber für kleine Displays (Smart­phone, eReader) nur einge­schränkt geeignet.

Systemvoraussetzungen:
PC/Mac: Mit einem PC oder Mac können Sie dieses eBook lesen. Sie benötigen dafür einen PDF-Viewer - z.B. den Adobe Reader oder Adobe Digital Editions.
eReader: Dieses eBook kann mit (fast) allen eBook-Readern gelesen werden. Mit dem amazon-Kindle ist es aber nicht kompatibel.
Smartphone/Tablet: Egal ob Apple oder Android, dieses eBook können Sie lesen. Sie benötigen dafür einen PDF-Viewer - z.B. die kostenlose Adobe Digital Editions-App.

Buying eBooks from abroad
For tax law reasons we can sell eBooks just within Germany and Switzerland. Regrettably we cannot fulfill eBook-orders from other countries.

Mehr entdecken
aus dem Bereich

von Bahaa E. A. Saleh; Malvin Carl Teich

eBook Download (2020)
Wiley-VCH (Verlag)
84,99