RT Journal Article T1 On the emergence of large and complex memory effects in nonequilibrium fluids A1 Lasanta Becerra, Antonio A1 Vega Reyes, Francisco A1 Prados, A. A1 Santos, A. AB Control of cooling and heating processes is essential in many industrial and biological processes. In fact, the time evolution of an observable quantitymay differ according to the previous history of the system. For example, a systemthat is being subject to cooling and then, at a given time t(w) for which the instantaneous temperature is T (t(w)) = T-st, is suddenly put in contactwith a temperature source at T-st may continue cooling down temporarily or, on the contrary, undergo a temperature rebound. According to current knowledge, there can be only one 'spurious' and small peak/low. However, our results prove that, under certain conditions, more than one extremum may appear. Specifically, we have observed regionswith two extrema and a critical point with three extrema. We have also detected cases where extraordinarily large extrema are observed, as large as the order of magnitude of the stationary value of the variable of interest. We showthis by studying the thermal evolution of a low density set ofmacroscopic particles that do not preserve kinetic energy upon collision, i.e. a granular gas. We describe themechanismthat signals in this system the emergence of these complex and large memory effects, and explain why similar observations can be expected in a variety of systems. PB IOP SN 1367-2630 YR 2019 FD 2019-03-01 LK https://hdl.handle.net/10016/38084 UL https://hdl.handle.net/10016/38084 LA eng NO his work has been supported by the Spanish Agencia Estatal de Investigación Grants (partially financed by the ERDF) No. MTM2017-84446-C2-2-R, MTM2014-56948-C2-2-P (AL), and No. FIS2016-76359-P (FVR and AS), and also by Universidad de Sevilla's VI Plan Propio de Investigación Grant PP2018/494 (AP). Use of computing facilities from Extremadura Research Centre for Advanced Technologies (CETA-CIEMAT), funded by the ERDF is also acknowledged. DS e-Archivo RD 3 jul. 2024