Applications and Metrology at Nanometer-Scale 2 Measurement Systems, Quantum Engineering and RBDO Method

Applications and Metrology at Nanometer-Scale 2 Measurement Systems, Quantum Engineering and RBDO Method by Pierre-Richard Dahoo, published by John Wiley & Sons on April 6, 2021, is a comprehensive exploration of nanoscience and quantum engineering. Spanning 288 pages, this edition delves into the innovative applications of quantum physics and nanotechnologies, focusing on the development of sensitive materials and advanced sensor measurement systems.
Readers will find a detailed examination of optical systems designed for nanoscale measurement, alongside quantum physics models that illustrate the interactions of two-state systems with their environments. The book also discusses the concept of spin derived from the Dirac equation and includes theoretical foundations complemented by practical examples, particularly in the context of reliability-based design optimization (RBDO) for mechanical structures. This resource is aimed at teachers, researchers, engineering students, and working professionals, providing essential knowledge in the fields of science, technology, and engineering.
Official synopsis Publisher
Nanoscience, nanotechnologies and the laws of quantum physics are sources of disruptive innovation that open up new fields of application. Quantum engineering enables the development of very sensitive materials, sensor measurement systems and computers. Quantum computing, which is based on two-level systems, makes it possible to manufacture computers with high computational power.
This book provides essential knowledge and culminates with an industrial application of quantum engineering and nanotechnologies. It presents optical systems for measuring at the nanoscale, as well as quantum physics models that describe how a two-state system interacts with its environment. The concept of spin and its derivation from the Dirac equation is also explored, while theoretical foundations and example applications aid in understanding how a quantum gate works. Application of the reliability-based design optimization (RBDO) method of mechanical structures is implemented, in order to ensure reliability of estimates from the measurement of mechanical properties of carbon nanotube structures.
This book provides valuable support for teachers and researchers but is also intended for engineering students, working engineers and Masters students.
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