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DESCRIPTION:Entanglement distillation and DIQKD\n\nQuantum entanglement can be quantified in many ways\, some of which bear clear operational meanings. The Distillable Entanglement and DIQKD rate are two such measures\, speculated to be equivalent as stated by the Revised Peres Conjecture (Friedman and Leditzky\, 21). Our research lays foundations to the conjecture’s proof\, most notably using the notion of ‘private states’\, a family of quantum states that arise naturally in the context of QKD.  Asking questions such as “what kind of private state can be resulted from a certain DIQKD protocol?”\, we were able to provide simple sufficient conditions for the Revised Peres Conjecture to hold.
X-ALT-DESC;FMTTYPE=text/html:<h2>Entanglement distillation and DIQKD</h2>Quantum entanglement can be quantified in many ways, some of which bear clear operational meanings. The <em>Distillable Entanglement</em> and <em>DIQKD rate</em> are two such measures, speculated to be equivalent as stated by the Revised Peres Conjecture (Friedman and Leditzky, 21). Our research lays foundations to the conjecture’s proof, most notably using the notion of ‘private states’, a family of quantum states that arise naturally in the context of QKD.  Asking questions such as “what kind of private state can be resulted from a certain DIQKD protocol?”, we were able to provide simple sufficient conditions for the Revised Peres Conjecture to hold.
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SUMMARY:IQC Student Seminar Featuring Itammar Steinberg\, Weizmann Institute of Science
DTSTART;TZID=America/New_York:20240731T120000
DTEND;TZID=America/New_York:20240731T130000
DTSTAMP:20260419T051855Z
TRANSP:OPAQUE
STATUS:CONFIRMED
SEQUENCE:0
LOCATION:QNC 1201
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