Mono-Cycle Photonics and Optical Scanning Tunneling Microscopy

Mono-Cycle Photonics and Optical Scanning Tunneling Microscopy

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Deals with both the ultrashort laser-pulse technology in the few- to mono-cycle region and the laser-surface-controlled scanning-tunneling microscopy (STM) extending into the spatiotemporal extreme technology. The former covers the theory of nonlinear pulse propagation beyond the slowly-varing-envelope approximation, the generation and active chirp compensation of ultrabroadband optical pulses, the amplitude and phase characterization of few- to mono-cycle pulses, and the feedback field control for the mono-cycle-like pulse generation. In addition, the wavelength-multiplex shaping of ultrabroadband pulses, and the carrier-phase measurement and control of few-cycle pulses are described. The latter covers the CW-laser-excitation STM, the femtosecond-time-resolved STM and atomic-level surface phenomena controlled by femtosecond pulses.STM preamplifier generally has an I/V converter circuit with an operational amplifier (OP amp.), as is shown in Fig.7.13, in its first stage. This circuit ideally has a relation of Vout = aˆ’IinRf between the input current Iin and the output voltage Vout, where Rf is the ... Circuit diagram of an STM current-voltage converter Fig. 7.14.


Title:Mono-Cycle Photonics and Optical Scanning Tunneling Microscopy
Author: Mikio Yamashita, Hidemi Shigekawa, Ryuji Morita
Publisher:Springer Science & Business Media - 2005-01-13
ISBN-13:

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