DOAJ Open Access 2024

Using a Neural Network to Approximate the Negative Log Likelihood Function

Liu Shenghua Jamieson Nathan Lannon Kevin Mohrman Kelci Negash Sirak +2 lainnya

Abstrak

An increasingly frequent challenge faced in HEP data analysis is to characterize the agreement between a prediction that depends on a dozen or more model parameters—such as predictions coming from an effective field theory (EFT) framework—and the observed data. Traditionally, such characterizations take the form of a negative log likelihood (NLL) function, which can only be evaluated numerically. The lack of a closed-form description of the NLL function makes it difficult to convey results of the statistical analysis. Typical results are limited to extracting “best fit” values of the model parameters and 1D intervals or 2D contours extracted from scanning the higher dimensional parameter space. It is desirable to explore these high-dimensional model parameter spaces in more sophisticated ways. One option for overcoming this challenge is to use a neural network to approximate the NLL function. This approach has the advantage of being continuous and differentiable by construction, which are essential properties for an NLL function and may also provide useful handles in exploring the NLL as a function of the model parameters. In this talk, we describe the advantages and limitations of this approach in the context of applying it to a CMS data analysis using the framework of EFT.

Topik & Kata Kunci

Penulis (7)

L

Liu Shenghua

J

Jamieson Nathan

L

Lannon Kevin

M

Mohrman Kelci

N

Negash Sirak

W

Wan Yuyi

Y

Yates Brent

Format Sitasi

Shenghua, L., Nathan, J., Kevin, L., Kelci, M., Sirak, N., Yuyi, W. et al. (2024). Using a Neural Network to Approximate the Negative Log Likelihood Function. https://doi.org/10.1051/epjconf/202429509041

Akses Cepat

Informasi Jurnal
Tahun Terbit
2024
Sumber Database
DOAJ
DOI
10.1051/epjconf/202429509041
Akses
Open Access ✓