Overview and design optimization of a custom hybrid X-ray telescope for the International Axion Observatory (IAXO)
Yue Yu, Jooyun Woo, Ipek Altunyurt, Stefano Basso, Vadim Burwitz, Francisco R. Candón, Juan Francisco Castel Pablo, Marta M. Civitani, Todd Decker, Klaus Desch, Desiree Della Monica Ferreira, Javier Galan, Maurizio Giannotti, Louis Helary, Peter L. Henriksen, Alba María Huerva, Igor G. Irastorza, Eftychia Kotsiou, Axel Lindner, Frank Marutzky, Sonny Massahi, Sam Moseley, Takashi Okajima, Johanna von Oy, Diego Paredes-Sanz, Giancarlo Parodi, Kerstin Perez, Michael J. Pivovaroff, David Reuther, Anacorina Romero, Jaime Ruz, Vyshnavi Sabbi, Tobias Schiffer, Uwe Schneekloth, Daniele Spiga, Marcela Stern, Julia K. Vogel
Abstract
We present the design optimization for maximizing the effective area of a custom X-ray optic for the International Axion Observatory (IAXO) and BabyIAXO, including its novel hybrid configuration that enables full coverage of the 700-mm-diameter magnetic bore with minimal stress imposed on the mirrors; shell layout optimized for axion spectra and spatial distribution; and the coating recipes that enhance reflectivity in the energy range of interest. We evaluate how these design choices improve the observation signal-to-noise ratio (SNR) of BabyIAXO and IAXO by calculating the broad-band effective area and simulating the point spread function (PSF) and focal spot at the detector plane. The cost-effective and scalable optic offers an energy response from 0.03--15 keV, achieving an effective area that exceeds 2400 cm2 near 1 keV - the peak of the ABC axion spectrum - and remains above 1700 cm2 around 3 keV - the peak of the Primakoff axion spectrum. It yields a half-power diameter (HPD) of 46 for an on-axis point source at infinity, and a focal-spot HPD of 120 for the radial distribution expected for axion signals within the approximately 3-radius solar core. A relatively generous fabrication-error budget is also summarized. The custom optic, accounting for fabrication errors, is anticipated to deliver a more than 55-fold enhancement in the SNR.
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