<div>I’m wondering that the results are related to the initial moments of all the Fe atoms which depends on your initial setting.</div><div>Dexi Shao <br></div>
<div><br></div><div><br></div><div style="font-size: 12px;font-family: Arial Narrow;padding:2px 0 2px 0;">------------------ 原始邮件 ------------------</div><div style="font-size: 12px;background:#efefef;padding:8px;"><div><b>发件人:</b> "DibyaR Prakash"<dibyaprakashrai@gmail.com>; </div><div><b>发送时间:</b> 2016年4月22日(星期五) 下午5:42</div><div><b>收件人:</b> "wien@zeus.theochem.tuwien.ac.at"<wien@zeus.theochem.tuwien.ac.at>; </div><div><b>主题:</b> [Wien] Fe nano-crystal</div></div><div><br></div><div dir="ltr"><div><h1 id="yui_3_14_1_1_1461316016486_2770"><font size="2"><span style="font-weight:normal">Dear Wien2k users</span></font></h1><h1 id="yui_3_14_1_1_1461316016486_2770"><font size="2"><span style="font-weight:normal"></span></font></h1><p id="yui_3_14_1_1_1461316016486_2250">I have created a Fe nano-crystal from a supercell method 3x3x3 with 10 Angstrom Vacuum along x y and z-axis. The calculation of DOS shows an energy band gap in both the spin channel, a figure of totals DOS has been attached. The results of total magnetic moment (Bohr Magnetron) is very high as shown below,</p>
<p>MAGNETIC MOMENT IN INTERSTITIAL = 1.<span style="border-bottom-color: rgb(204, 204, 204); border-bottom-width: 1px; border-bottom-style: dashed; position: static; z-index: 1;" onclick="return false;" t="7" data="39056" isout="1">39056</span></p>
<p>Fe1: MAGNETIC MOMENT IN SPHERE 1 = 3.<span style="border-bottom-color: rgb(204, 204, 204); border-bottom-width: 1px; border-bottom-style: dashed; position: static; z-index: 1;" onclick="return false;" t="7" data="54229">54229</span><br>Fe2: MAGNETIC MOMENT IN SPHERE 2 = 3.<span style="border-bottom:1px dashed #ccc;z-index:1" onclick="return false;" t="7" data="14507">14507</span><br>Fe3: MAGNETIC MOMENT IN SPHERE 3 = 3.<span style="border-bottom:1px dashed #ccc;z-index:1" onclick="return false;" t="7" data="40010">40010</span><br>Fe44: MAGNETIC MOMENT IN SPHERE 4 = 2.<span style="border-bottom:1px dashed #ccc;z-index:1" onclick="return false;" t="7" data="80862">80862</span></p>
<p>Fe5: MAGNETIC MOMENT IN SPHERE 5 = 1.<span style="border-bottom:1px dashed #ccc;z-index:1" onclick="return false;" t="7" data="68789">68789</span><br>Total: MAGNETIC MOMENT IN CELL = 104.<span style="border-bottom:1px dashed #ccc;z-index:1" onclick="return false;" t="7" data="18207">18207</span></p>
<p id="yui_3_14_1_1_1461316016486_2253">I am not sure whether these results are accurate or not I just want to know am I going correct or not?<font size="2"> H<span style="font-weight:normal">ow to confirm the result of Fe-nano crystal, calculated from wien2k (DFT) ?</span></font></p>
<br></div>Sincerely,<br><div><div class="gmail_signature"><div dir="ltr"><div><div dir="ltr"><div><div dir="ltr"><div><div dir="ltr"><div><div dir="ltr"><div><div dir="ltr"><div><div dir="ltr"><div>Dibya Prakash Rai</div><div>-----------------------------------------<br>Assistant Professor<br></div><div>Department of Physics <br></div><div>Pachhunga University College<br></div><div>Mizoram University<br></div><div>Aizawl,Mizoram<br></div><div>India-<span style="border-bottom:1px dashed #ccc;z-index:1" onclick="return false;" t="7" data="796001">796001</span><br></div><div>-----------------------------------------<br><br></div></div></div></div></div></div></div></div></div></div></div></div></div></div></div>
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