Leopoldo Pando Zayas is a Professor of Physics at the University of Michigan, specializing in Theoretical Elementary Particle Physics within the High Energy Theory group. His work is affiliated with the Michigan Center for Theoretical Physics (MCTP), where he conducts cutting-edge research at the intersection of quantum gravity, string theory, and black hole physics. Professor Pando Zayas' research focuses on quantum aspects of black holes, particularly examining how quantum corrections affect black hole entropy beyond the classical Bekenstein-Hawking formula. His work demonstrates how logarithmic corrections to black hole entropy can be matched to microscopic descriptions using the AdS/CFT correspondence. Additional research interests include quantum mechanical descriptions of gravity, quantum chaos, irreversibility theorems in renormalization group (RG) flows, gravitational collapse in Anti-de Sitter (AdS) space, Wilson loops in gauge theories, and implementing disorder within the AdS/CFT framework. His recent publications reveal a strong focus on precision calculations in holography, with particular attention to black hole thermodynamics across various dimensions, quantum corrections to Hawking radiation, and the application of quantum information concepts like complexity to gravitational systems. His work often bridges high-energy theory with mathematical physics, exploring connections between gauge theories and gravitational phenomena. Scientific Awards: UROP's Outstanding Research Mentor Award recognizing exceptional guidance of undergraduate researchers Honorable Mention in the Gravity Research Foundation Essay Competition (2014) for work connecting quantum chaos to the black hole information paradox Honorable Mention in the Gravity Research Foundation Essay Competition (2012) addressing AdS stability and gravitational collapse Professor Pando Zayas has actively mentored undergraduate research projects and advised diploma students at ICTP in Italy, demonstrating commitment to training the next generation of theoretical physicists. His teaching portfolio includes advanced courses in quantum mechanics, general relativity, string theory, and statistical physics. He has organized theoretical physics seminars and participated in numerous international collaborations with institutions including IAS Princeton, KITP Santa Barbara, and ICTP Italy.











