Equivalent noise bandwidth analysis from transfer functions
Equivalent noise bandwidth analysis and methods of computation from system transfer functions
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Equivalent noise bandwidth analysis and methods of computation from system transfer functions
Compression schemes for reducing bandwidth required for transmission of cloud photographs from satellites
Nonzero bandwidth effects on second order nonlinear optical interactions with submillimeter wavelength applications
Motivated by previous work of Li and Rimoldi for obtaining bandwidth efficient TCM signals with finite decoding delay, we present an alternative representation for their encoder/signal mapper transmitter structure which merely consists of a single filter having an input equal to the equivalent of the inoput data bits in their implementation.
Several factors that govern the bandwidth performance of the.
Laser-plasma accelerators (LPAs) offer an attractive alternative to conventional accelerators for the development of compact electron sources and next-generation light sources. Due to orders-of-magnitude larger accelerating gradients, LPAs enable the acceleration of high-brightness electron beams to ultrarelativistic energies in millimeter- to centimeter-scale distances. However, LPA stability is limited by shot-to-shot fluctuations of the driving laser system. Specifically, fluctuations in the final-focus longitudinal position result in correlated instability in LPA electron beam qualities, including total beam charge, average beam energy, and energy spread. We demonstrate active stabilization of the longitudinal focal position for a 100 TW-class laser system. This repetition-rate scalable stabilization system leverages noninvasive wave front monitoring of a copropagating, unamplified kHz pulse train to guide corrective adjustments to the focal position of a 1 Hz amplified drive laser via an upstream telescope on millisecond timescales. In this demonstration, the approach limits standard deviation fluctuations of the amplified drive beam’s longitudinal focal position to ±0.22 mm (representing at least a 53% reduction), achieved with a correction bandwidth that reaches the Nyquist frequency limit. Consequently, we observe marked improvements in both long-term and shot-to-shot LPA stability in terms of charge and spectrum.
There are numerous instabilities present in charged particle beams that undergo exponential growth and reach saturation. In various applications, such as free-electron lasers or micro-bunching light sources, achieving saturation is desirable. Conversely, there are applications where these instabilities are utilized as linear broad-band amplifiers for signals embedded in the charged beam. In the latter scenario, the saturation of an instability induces non-linear distortions in the imprinted signal, thereby limiting the useful range of such amplifiers. Accurate evaluation of these instabilities necessitates a complete and comprehensive modeling approach that includes shot noise within the beam. Unfortunately, such modeling is not always feasible or practical. In this paper, we introduce a methodology utilizing the frequency and bandwidth of the instability as key parameters. Through this, we derive an estimation for the range of linear instability growth. Our derivation is conducted in a model-independent manner, making it applicable to a broad spectrum of instabilities. To validate our approach, we employ established and thoroughly benchmarked simulations with a free electron laser (FEL) code as well as self-consistent 3-dimensional simulation of plasma-cascade instability using code SPACE.
Effects of filter bandwidth in spectrum analysis of random vibration
Traveling wave maser employing magnetic stagger tuning in small compact superconducting magnet achieves trading excess electronic gain for bandwidth
Coding scheme using noiseless feedback link to improve communication over noisy forward link, assuming no bandwidth constraint
Design, alignment, testing, and specifications of S-band transponder Mark I with 20-cycle bandwidth for planetary spacecraft
Compatible double sideband/single sideband/constant bandwidth FM telemetry system for wideband data
L and S type decametric bursts from Jupiter using wide bandwidth observations from high resolution oscillographic recordings
Stiffness matrices bandwidth minimization by automatic node relabeling in equilibrium problems of lumper-parameter systems
Lunar reflectivity, acquisition altitude, landing radar altimeter beam bandwidth, and Doppler equations verified for use in mathematical model
Fourier coding method for coding images for digital transmission, achieving bandwidth reduction for televised images
Mathematical expression for effects of receiver bandwidth on lunar occultation based on narrow symmetric passbands
Influence of bandwidth restriction on signal to noise performance of modulated PCM/NRZ signal