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He is well known for his work in semiconductor physics and technology, including his 1967 invention (with Dawon Kahng) of the floating-gate transistor, [2] now widely used in non-volatile semiconductor memory devices. He wrote and edited many books, including Physics of Semiconductor Devices, one of the most-cited texts in its field.
Taur is known for his research in semiconductor device design and modeling, focusing on the structure and physics of transistors. He holds 14 U.S. patents and has authored or co-authored over 200 technical papers, in addition to coauthoring Fundamentals of Modern VLSI Devices with Tak Ning, spanning three editions released in 1998, 2009, and 2022.
Tyagi wrote one internationally acclaimed book Introduction to Semiconductor Materials and Devices, [5] which is widely used in Electrical Engineering, semiconductor devices and material science undergraduate and postgraduate courses. It was published by John Wiley & Sons on 7 March 1991. M. S. Tyagi: Introduction to Semiconductor Materials and ...
The rectifying metal–semiconductor junction forms a Schottky barrier, making a device known as a Schottky diode, while the non-rectifying junction is called an ohmic contact. [1] (In contrast, a rectifying semiconductor–semiconductor junction, the most common semiconductor device today, is known as a p–n junction.)
A semiconductor device is an electronic component that relies on the electronic properties of a semiconductor material (primarily silicon, germanium, and gallium arsenide, as well as organic semiconductors) for its function. Its conductivity lies between conductors and insulators.
Another book Fiber-Optic Communication Systems, first published in 1992 and currently in its fifth edition, is used as a standard textbook in many universities for courses on telecommunication. The list of books published by Agrawal is as follows. G. P. Agrawal and N. K. Dutta, Semiconductor Lasers, 2nd ed. (Springer, 2002).