\/svg>","ionicons-filled--link":"<\/svg>"}) Accessibility Tools Invert colors Monochrome Dark contrast Light contrast Low saturation High saturation Highlight links Highlight headings Screen reader Read mode Content scaling 100% Font size 100% Line height 100% Letter spacing 100% Skip to main content PL The Institute The Institute General information Emploees News Scientific News Gender equality plan Address and contact data Research Research profile List of publications Information in BIP Scientific Council Organizational structure GDPR Events Seminars Current seminars List of seminars Conferences Current conferences Past conferences For students Doctoral school General Information Curriculum Recruitment School Council Doctoral Student Council Teaching Doctoral students Mid-term evaluation For students Master theses Student training Visiting the Institute For employees Institute e-mail Eduroam Publication registry Contact us Address and contact data Important phone numbers and emails PL The Institute The Institute General information Emploees News Scientific News Gender equality plan Address and contact data Research Research profile List of publications Information in BIP Scientific Council Organizational structure GDPR Events Seminars Current seminars List of seminars Conferences Current conferences Past conferences For students Doctoral school General Information Curriculum Recruitment School Council Doctoral Student Council Teaching Doctoral students Mid-term evaluation For students Master theses Student training Visiting the Institute For employees Institute e-mail Eduroam Publication registry Contact us Address and contact data Important phone numbers and emails Events Home Events List of seminars Seminar of the Institute of Theoretical Physics of University of Wrocław 12:15, 13-02-22 UWr, pl. Maksa Borna 9, sala 422 Kwantowa krytyczność w układach silnie skorelowanychprof. dr hab. Tadeusz KopećQuantum criticality emerges when a many-body system is in the proximity of a continuous phase transition that is driven by quantum fluctuations close to T=0. This can occur when a continuous phase transition is suppressed to zero temperature, eg, by applying pressure, making a quantum phase transition. In the quantum critical regime, exotic, yet universal properties are anticipated; Bose-Einstein condensation in ultracold atoms and high Tc superconductors provide systems to test these predictions. Although one can never reach the absolute zero of temperature, the presence of a quantum critical point influences a wide region of the phase diagram. The underlying theory behind quantum critical points combines the theory of quantum mechanics with the theory of phase transitions, however with a number of unsolved issues.
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Quantum criticality emerges when a many-body system is in the proximity of a continuous phase transition that is driven by quantum fluctuations close to T=0. This can occur when a continuous phase transition is suppressed to zero temperature, eg, by applying pressure, making a quantum phase transition. In the quantum critical regime, exotic, yet universal properties are anticipated; Bose-Einstein condensation in ultracold atoms and high Tc superconductors provide systems to test these predictions. Although one can never reach the absolute zero of temperature, the presence of a quantum critical point influences a wide region of the phase diagram. The underlying theory behind quantum critical points combines the theory of quantum mechanics with the theory of phase transitions, however with a number of unsolved issues.