scispace - formally typeset
Open AccessJournal Article

Mathematical Analysis of Random Noise-Conclusion

S. O. Rice
- 01 Jan 1945 - 
- Vol. 24, pp 46-156
Reads0
Chats0
About
This article is published in Bell System Technical Journal.The article was published on 1945-01-01 and is currently open access. It has received 807 citations till now.

read more

Citations
More filters
Journal ArticleDOI

The intensity-fluctuation distribution of Gaussian light

TL;DR: In this article, the authors discuss the quantum-mechanical problem of intensity fluctuations in samples of Gaussian light and its connection with the corresponding classical scalar problem involving fluctuations of random noise power.
Journal ArticleDOI

Role of Spin Noise in the Detection of Nanoscale Ensembles of Nuclear Spins

TL;DR: It is shown how reproducible measurements of the polarization variance can be obtained by controlling the spin correlation time and rapidly sampling a large number of independent spin configurations, which allows significant improvement in the signal-to-noise ratio for nanometer-scale magnetic resonance imaging.
Journal ArticleDOI

A-mode speckle reduction with compound frequencies and compound bandwidths

TL;DR: In this paper, a simple model for predicting the degree of speckle reduction in A-mode images via the correlation coefficient was tested experimentally, and the model appeared to account correctly for the influence of image system bandwidth on frequency separations required for nearly independent sampling in compound frequency imaging.
Journal ArticleDOI

Hyperbolic asymptotics in Burgers' turbulence and extremal processes

TL;DR: In this paper, the authors considered large time asymptotics of statistical solutionu(t,x) (1.2) of the Burgers' equation, where ξ(x)=ξL(x) is a stationary zero mean Gaussian process depending on a large parameter.
Journal ArticleDOI

Gold rotor bead tracking for high-speed measurements of DNA twist, torque and extension.

TL;DR: This work introduces gold rotor bead tracking (AuRBT), which enables direct measurements of DNA torque with >50× shorter integration times than previous techniques; it demonstrated high-resolution torque spectroscopy by mapping the conformational landscape of a Z-forming DNA sequence.