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Research Fields

ACTIVE RESEARCH PROJECTS

Category: Astrophysics - Digital Signal Processing

Research Project: Enhancing Point Source Detection in Astronomical Images

Project Code: IFISR-Astro-231020-PSD

People: Y. Güray Hatipoğlu (FIRE)

The main focus of the IFISR-Astro-231020-PSD coded program is the creation of a robust toolbox to disentangle stellar signals from noise and background in astronomical images (and also from derived lightcurve products) of telescopes.

Sub-Project: IFISR-Astro-231020-PSD-JWSTMIRI

This sub-project utilizes statistical and digital image analysis techniques, available data, and literature to improve Point Source Detection in James-Webb Space Telescope Mid-InfraRed Instrument (JWST MIRI) images.

Related Publications/Conferences:

  1. Value Sliced and Derivative Images for Source Mask in JWST MIRI Photometry

    In this arXiv preprint, seven real JWST MIRI F770W images were examined with unWISE catalog sources located on them. Eliminating pixel digital numbers (intensities) below a certain percentage, i.e., retaining the top 0.3% of values, and derivative images were utilized to source mask more unWISE catalog objects without resulting in erroneous detections. A combination of value-sliced fraction images and derivative image methods looks quite promising.

  2. 2023 October Conference Beyond_BookofAbstract Page 31/42 for Güray Hatipoğlu Abstract

    In this conference presentation, the results of applying Singular Spectrum Analysis to the simulated image of 100 celestial signals in varying shapes and luminosities with various added noises were explained. Later, several applications of this method to real JWST MIRI F770W results were also presented, with a slightly better capture of cataloged objects compared to the standard Photutils PSF Photometry with default values.



Research Project: Lightcurve Decomposition Works

Project Code: FIRE-Astro-240830-LDW

People: Y. Güray Hatipoğlu (FIRE)

The main focus of the FIRE-Astro-240830-LDW coded program is higher accuracy detrending and denoising of lightcurves-photometry time series for examining stellar signals with better fidelity.

Sub-Project: FIRE-Astro-240830-LDW-TESS

Here, time series and other analysis methods are being applied to enhance the processing of Transiting Exoplanet Surveying Satellite (TESS) lightcurves

Related Publications/Conferences:

Sub-Project: FIRE-Astro-240830-LDW-ALeRCE

Automatic Learning for the Rapid Classification of Events (ALeRCE) is an advanced deep learning technique which achieves just too many things to prevent them being recorded here, and instead readers are recommended to go here. It currently uses Zwicky Transient Facility bands, and it can incorporate LSST later on. FIRE is looking for ways to increase classification accuracy of this pipeline

Related Publications/Conferences:

Category: Environmental Science: Chemical Exposure

Research Project: Exposure Assessment of Micropollutants

Project Code: FIRE-ENV-240801-EXP

People: Dr. Hale Demirtepe (Principal Investigator, IYTE), Burcu Yıldırım (IYTE), Y. Güray Hatipoğlu (FIRE)

This project examines the available data on micropollutants in environment and biota and aims to make an exposure assessment to fill the identified gaps in this subject.

Sub-Project: FIRE-ENV-240801-EXPTR

This sub-project focuses on available data in environmental and biota samples from Türkiye to estimate exposure of micropollutants

Related Publications/Conferences:

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EUROPEAN UNION Call for Proposals Partner Search Listings

Here is the list of Call for Proposals FIRE Araştırma Eğitim Ltd. Şti is within the partner search list: