BEGIN:VCALENDAR VERSION:2.0 PRODID:-//Drupal iCal API//EN X-WR-CALNAME:Events items teaser X-WR-TIMEZONE:America/Toronto BEGIN:VTIMEZONE TZID:America/Toronto X-LIC-LOCATION:America/Toronto BEGIN:DAYLIGHT TZNAME:EDT TZOFFSETFROM:-0500 TZOFFSETTO:-0400 DTSTART:20160313T070000 END:DAYLIGHT BEGIN:STANDARD TZNAME:EST TZOFFSETFROM:-0400 TZOFFSETTO:-0500 DTSTART:20161106T060000 END:STANDARD END:VTIMEZONE BEGIN:VEVENT UID:68322d454eddf DTSTART;TZID=America/Toronto:20170224T114500 SEQUENCE:0 TRANSP:TRANSPARENT DTEND;TZID=America/Toronto:20170224T114500 URL:/institute-for-quantum-computing/events/rac1-journa l-clubseminar-series-0 SUMMARY:RAC1 Journal Club/Seminar Series CLASS:PUBLIC DESCRIPTION:Summary \n\nEPITAXIAL GROWTH OF SILICON NANOWIRES AND NIOBIUM T HIN FILMS FOR\nMAGNETIC RESONANCE FORCE MICROSCOPY\n\nMICHELE PISCITELLI\n \nMagnetic Resonance Force Microscopy (MRFM) is an imaging technique\nenab ling the acquisition of magnetic resonance images at nanometer\nscales. Si ngle electron spin sensitivity has been demonstrated [1] and\ncurrent MRFM research is focused on working towards achieving single\nnuclear spin sen sitivity. In general\, an MRFM setup requires a\nnano-scale source of high magnetic field gradients to modulate the\nsample spins and a cantilever-b ased detection scheme to measure their\nmagnetic moment.\n DTSTAMP:20250524T203413Z END:VEVENT END:VCALENDAR