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Á°²ó ¤È¤À¤¤¤Ö°ã¤¦¤Ê¤¢¡£1kV ¤Î target current ¤Ï¤½¤ì¤Û¤ÉÊѤï¤é¤ó¤«¡£ ¤Á¤ç¤Ã¤È¤³¤Î¤Ø¤ó¤Ç²áµî¤ÎÍúÎò¤ò¥ê¥¹¥È¤·¤Æ¤ª¤³¤¦¡£ÅÅήÃÍ¤Ï 3kV ¤Î target¡£ ¤¦¡¼¤ó¡¢¤Þ¤¢¾¯¤Ê¤¤¤Ê¤é¾¯¤Ê¤¤¤Ê¤ê¤Ë¬Äꤹ¤ì¤Ð¤¤¤¤¤ó¤À¤±¤É¡¢ ÊÑÆ°¤Î¸¶°ø¤Ï¤Ê¤ó¤À¤í¤¦¡© ¤Á¤ç¤Ã¤Èµ¤¤Ë¤Ê¤ë¤Î¤Ï¥¤¥ª¥ó²½¼¼¤ÎÅŻҲîÅÅ°µ¤À¤±¤É¡¢ ¤³¤ì 200eV ¤Ç¤¤¤¤¤ó¤À¤è¤Ê¤¢¡£

#5 [paper] º£Æü½¦¤Ã¤¿ÏÀʸ (PRL 98(16), APL 90(16), TSF 515(15))

ºòÆü¤Î JJAP ¤Î¤âÊä´°¡£
TSF ¤Ï EMRS 2006 Symp O, ¥«¥ë¥³¥²¥Ê¥¤¥É¤Î SC ±þÍÑ¡£ ¤¤¤Ã¤Ñ¤¤¤¢¤Ã¤¿¤±¤É¡¢¤È¤ê¤¢¤¨¤º¥á¥¿¥ë¤Î¥«¥ë¥³¥²¥ó²½¥×¥í¥»¥¹¤Î¤ß½¦¤Ã¤Æ¤ª¤¯¡£

¡÷ Optically produced cross patterning based on local dislocations inside MgO single crystals:

µþÂç¤Î¥°¥ë¡¼¥×¡£Ã±·ë¾½ MgO ¤Ë fs ¥ì¡¼¥¶ (780nm, 20uJ) ¤ò NA 0.9 ¤Î ¥ì¥ó¥º¤Ç¹Ê¤Ã¤Æ1kHz Åö¤Æ (²¿ÉÃ?)¡¢È¯À¸¤·¤¿ dislocation ¤ò¸÷³Ø¸²Èù¶À´Ñ»¡¤·¤¿ÏᣠÆÃÄê¤Î·ë¾½¼´Êý¸þ¤Ë·ç´Ù¤ÎÇ»¤¤Éôʬ¤¬¿­¤Ó¤ë¤è¤¦¤Ë¤Ê¤Ã¤Æ¤¤¤Æ¡¢ ¤½¤ì¤Ïž°Ü¤¬µ¯¤³¤ê°×¤¤Êý¸þ¤ÈÁê´Ø¤·¤Æ¤ª¤ë¡¢¤È¤¤¤¦¤³¤È¤é¤·¤¤¡£

¡÷ Unusual thermal stability of quantum size effect Pb islands grown on Si(111)-In(4¡ß1):

Pb island ¤Î QSE ¤Ë¤è¤ë°ÂÄêÀ­¤ò¸«¤ÆµÄÏÀ¤·¤¿Ïᣠ185K ¤Ç 0.1¡Á0.2 ML ¤Î Pb ¤ò depo¡¢RT ¤Þ¤Ç¾º²¹¤·¤Æ island ¤ÎÊѲ½¤ò STM ¤È SPA-LEED ¤Ç´Ñ»¡¡£ 4 ¸¶»ÒÁؤι⤵¤Î island ¤¬À¸¤­»Ä¤Ã¤¿¤½¤¦¤Ç¡¢ ½¾Íè¸À¤ï¤ì¤Æ¤¤¤¿¤â¤Î¤è¤ê¤À¤¤¤Ö¹â¤¤¤È¤Î¤³¤È¡£

¡÷ High performance polythiophene/fullerene bulk-heterojunction solar cell with a TiOx hole blocking layer:

µþÂ票¥Í¥ë¥®¡¼Íý¹©³Ø¸¦¤Î¥°¥ë¡¼¥×¡£¥Ý¥ê¥Á¥ª¥Õ¥§¥ó¤È¥Õ¥é¡¼¥ì¥ó·Ï¥¨¥¹¥Æ¥ë¤Î pn Àܹç¤Ë Al ÅŶˤòÉÕ¤±¤ëÁ°¤Ë TiOx ¤ò sol-gel ¤Ç 30nm ÄøÅÙ¤Þ¤ÇËì¸ü¤òÊѤ¨¤Æ¤Ä¤±¡¢¸úΨ¤ä¤½¤Î¼÷Ì¿¤ò¸«¤¿Ïá£5¡Á11 nm ÄøÅ٤ΠTiOx ¤Ë¤è¤Ã¤Æ¸úΨ¤Ï¾å¾º¡£ open circuit »þ¤Î I-V ¤«¤é¬¤Ã¤¿Äñ¹³¤¬Áý²Ã¡¢close ¤Î¤È¤­¤Î¤½¤ì¤¬¸º¾¯¤·¤Æ¤¤¤ë¤³¤È¤«¤é¡¢TiOx ¤¬¥­¥ã¥ê¥¢¥Ö¥í¥Ã¥¯ÁؤȤ·¤Æµ¡Ç½¤·¤Æ¤¤¤ë¤Î¤Ç¤Ï¡¢¤È¤Î¤³¤È¡£ ¤Þ¤¿¼÷Ì¿¤â¸þ¾å¡¢¤³¤ì¤Ï TiOx ¤¬ O block ¤Ë¤Ê¤Ã¤Æ¤¤¤ë¤È¤¤¤¦½¾Íè¤ÎµÄÏÀ¤Ç¤Ï¤Ê¤¯¡¢ Al ¤Î³È»¶¥Ð¥ê¥¢¤Ë¤Ê¤Ã¤Æ¤¤¤ë¤«¤é¤Ç¤Ï¡¢¤È¤Î¤³¤È¡£

¡÷ Properties of Cu(In,Ga)(S,Se)2 thin films prepared by selenization/sulfurization of metallic alloys:

Cu-In-Ga ¥×¥ê¥«¡¼¥µ¤ò S/Se Ê·°Ïµ¤¤Ç¥¢¥Ë¡¼¥ë¤·¤¿ CIGGS ¤Î XRD/SEM/EDS/Raman ¬Äê¡£ ¿¼¤µÁÈÀ®¡¢¥Ð¥ó¥É¥®¥ã¥Ã¥×¬Äê¡£

¡÷ Sulphurization of single-phase Cu11In9 precursors for CuInS2 solar cells:

Cu11In9 ñÁê¤Î¥¿¡¼¥²¥Ã¥È¤«¤é¥¹¥Ñ¥Ã¥¿¤Ç¥×¥ê¥«¡¼¥µ¤òÉÕ¤±¡¢ µ¤Áꥻ¥ì¥ó²½¤Ç CIS ¤Ë¤·¤¿Ïᣥ»¥ì¥ó²½»þ¤Î²¹ÅÙ¤¬ Cu11In9 ¤Îʬ²ò²¹ÅÙ¤è¤êÄã¤á¤ÎÊý¤¬¤¨¤¨¤Ç¡¢¤È¤Î¤³¤È¤é¤·¤¤¡£

#4 À¸Ïº

ÆڤĤ±¡£¤Ò¤µ¤Ó¤µ¡£¤À¤¤¤Ö¶õ¤¤¤Æ¤¿¤±¤É·Ð±ÄŪ¤Ë¤ÏÂç¾æÉפʤó¤À¤í¤«¡£

#3 [labo] Ê¿ÏÂÅŸ»µÈÀ¤óÍ踦

¥Ñ¥ë¥¹¤Î¸«ÀѤòĺÂפ¹¤ë¡£¤³¤ó¤Ê°Â¤¯¤Æ¤¤¤¤¤Î¤«¡¢¤È¤¤¤¦¤¯¤é¤¤Í­Æñ¤¤²Á³Ê¡£ Ãíʸ¤Ë¤¢¤¿¤ê¡¢¥ª¥·¥í¤ÎÀܳ¤Î·ï¤ÈÀ½Â¤¾ÚÌÀ½ñ¤À¤±¤ª´ê¤¤¤·¤Æ¤ª¤¯¡£ ¤¢¤È¡¢¤³¤ì¤Ï¤â¤¦¤Á¤ç¤¤Àè¤Î·ï¤À¤±¤É¡¢ ¥Ñ¥ë¥¹ÅŸ»¤ÇÅÅÎÏÀ©¸æ¤Ã¤Æ²Äǽ¤Ê¤Î¤«¤Ë¤Ä¤¤¤Æ¤âʹ¤¤¤Æ¤ß¤¿¡£

#2 [book] ¡Ø2¤Á¤ã¤ó¤Í¤ë¤Ï¤Ê¤¼ÄÙ¤ì¤Ê¤¤¤Î¤«¡©¡Ù¤Ò¤í¤æ¤­ ÉÞ·¬¼Ò¿·½ñ

¹Ô¤­¤Î·ÐÏ©¤ÇÆÉλ¡£¤Þ¤¢¿¿¤ÃÅö¤Ê¤³¤È¤¬½ñ¤«¤ì¤Æ¤¤¤ë¤«¤È¡£

#1 ¹Ô¤­

¥Ð¥¹Åż֥Х¹¡£¤Þ¤¿¤Á¤ç¤Ã¤È½ë¤¯¤Ê¤Ã¤¿¡£
¥³¥á¥ó¥È [Á´ÉôÆɤà/Åê¹Æ¤¹¤ë]

2006ǯ09·î14Æü(ÌÚ) [nǯÆüµ­]

#3 [book] ¥í¡¼¥Þ¿Í¤Îʪ¸ì (ʸ¸Ë) 24¡Á26

ÆÉλ¡£ ñ¹ÔËܤÏÂç³Ø¿Þ½ñ´Û¤Ç¼Ú¤ê¤ÆÆɤó¤À ¤Î¤ÇºÆÆɤÀ¤±¤É¡¢¤µ¤¹¤¬¤Ë 3 ǯȾ¤â·Ð¤Ä¤È¤¢¤Þ¤ê³Ð¤¨¤Æ¤¤¤Ê¤«¤Ã¤¿¤Ê¡£

#2 ¤º¤ëµÙ¤ß

µ¯¤­¤¿¤é¤â¤ÎÀ¨¤¤·ñÂÕ´¶¤¬¤¢¤Ã¤¿¤Î¤Ç¡¢·ë¶É°ìÆü¿²¤Æ¤¤¤¿¡£¤À¤á¡£

#1 µ¢¤ê

¸¶ÉÕ¡£·ë¹½¤Ê¹ß¤ê¡£µ¤²¹¤âÄ㤤¡£
¥³¥á¥ó¥È [Á´ÉôÆɤà/Åê¹Æ¤¹¤ë]

2005ǯ09·î14Æü(¿å) [nǯÆüµ­]

#11 µ¢¤ê

¸¶ÉÕ¡£¤Þ¤Ã¤¹¤°µ¢¤ë¡£

#10 Âç³Ø¥Í¥Ã¥ÈÀܳ

22:05 ¤¢¤¿¤ê¤ËÅÅÄÌÂç¥Î¡¼¥É¤ÇÀڤ줿ÌÏÍÍ¡£ kcom ·Ðͳ¤Ç¥á¡¼¥ë¤¬ÅþÃå¤Ï¤¹¤ë¤Î¤¬¥Ë¥ó¤È¤â¥«¥ó¤È¤â¡£

µ¢Â𤷤¿¤éÉü³è¤·¤Æ¤¤¤¿ÌÏÍÍ¡£23:50 ²á¤®¤¯¤é¤¤¤«¡©

#9 Àܹü±¡

±ýÉü¡£

#8 »õ°å¼Ô

Ãî»õ¼£ÎŤ¬°ìËܽª¤ï¤ê¡£ ¤·¤«¤·µÍ¤áʪ¤ÎÆþ¤Ã¤Æ¤ë»õ¤ò¤â¤¦¤¤¤Ã¤Á¤ç fix ¤·¤Ê¤¤¤È¤¤¤«¤ó¤é¤·¤¤¡£ ¤¦¡¼¤ó¡£

#7 [paper] º£Æü½¦¤Ã¤¿ÏÀʸ (APL 87(9))

APL ¤Î PDF ¤Ë¤Ï dx.doi.org ¤Ø¤Î¥ê¥ó¥¯¤¬ÃÖ¤«¤ì¤ë¤è¤¦¤Ë¤Ê¤Ã¤¿¤é¤·¤¤¡£ ¤³¤Ã¤Á¤Çµ­Ï¿¤·¤È¤¯Êý¤¬¸­¤¤¤«¤Î¤¦¡£

¡÷ Enhanced optical transmission through metal films with rotation-symmetrical hole arrays:

¼Â¸³¡£¥·¥ó¥°¥ë¥â¡¼¥É¥Õ¥¡¥¤¥Ð¡¼¤ÎüÌ̤ËÉÕ¤±¤¿ Au Ëì (390nm) ¤Ë FIB ¤Ç 360nm¦Õ ¤Î hole ¤Î array ¤òºîÀ®¡¢Æ©²áΨ¥¹¥Ú¥¯¥È¥ë (600-1600nm) ¤ò¸«¤Æ¤¤¤ë¡£array pattern ¤Ï square, hexagonal, graphite¡£ ¤¤¤¯¤Ä¤«ÆÃħŪ¤Ê¥Ô¡¼¥¯¤¬½Ð¸½¤·¤Æ¤¤¤ë¡£¤ª¤â¤·¤í¤¤¡£

¡÷ Surface plasmon enhanced photon drag in metal films:

Au(47nm)/Cr(3nm)/glass¡¢0.7mmW¡ß25mmL ¤Ê»îÎÁ (30¦¸) ¤Î Kretchmann ÇÛÃÖ¤Ç 930nm 10Hz 0.6mJ/shot, (width 3-5ns, peak 2.5MW/cm^2) ¤Ê¸÷¤òÅö¤Æ¤ë¤È¡¢SPP ¾ò·ï²¼ (p-pol, 42deg ¤¢¤¿¤ê) ¤Ç 0.1V ¤¯¤é¤¤¤ÎÅŰ̺¹¤¬È¯À¸¤·¤¿ (via 625 ÇܤΠPA)¡¢¤È¤¤¤¦Êó¹ð¡£ SPW ¤¬ hot electron ¤Ëž²½¤·¤Æ¡Á¤È¤¤¤¦ÉÁÁü¡£¤¹¤´¤¯¤ª¤â¤·¤í¤¤¡£

¡÷ Growth of high-quality ZnMgO epilayers and ZnO/ZnMgO quantum well structures by radical-source molecular-beam epitaxy on sapphire:

ZnMgO ¤È ZnO ¤ÈÁȤ߹ç¤ï¤»¤Æ QW ¤òºî¤ì¤ë¤ó¤¸¤ã¤Ê¤¤¤«¤È¤¤¤¦¥¢¥¤¥Ç¥£¥¢¤¬¤¢¤ë¤½¤¦¤Ê¡£ ZnO ¤¬ Wurtzite, MgO ¤Ï Rocksolt ¤À¤«¤éº®¾½¤ÏÆñ¤·¤½¤¦¤À¤±¤É¡¢ PLD ¤Ç¤ÏÊó¹ðÎ㤬¤¢¤ë¤é¤·¤¤¡£¤³¤ì¤ÏÈ¿±þÀ­ MBE (with RHEED) ¤Çºî¤Ã¤¿Êó¹ð¡£ 0¡Á40 % Mg ¤¯¤é¤¤¤Þ¤Ç XRD ¤Ç¤Ï Wurtzite¡¢600¡î¤¯¤é¤¤¤Ç¥¢¥Ë¡¼¥ë¤¹¤ë¤È flat ¤«¤Ä facet free ¤ÊɽÌ̤¬¤Ç¤­¤ë¤È¤Î¤³¤È¡£µÛ¼ýü¡¢ZnO À®Ä¹¤µ¤»¤¿¤È¤­¤Î PL ¤Ê¤É¡£

¡÷ Ultrahigh strength and high ductility of bulk nanocrystalline copper:

liq-N2/RT milling ¤Çºî¤Ã¤¿ nc-Cu µå»îÎÁ¤Î stress-strain ¬Äê¤È dislocation ¤Î TEM ´Ñ»¡¡£grain size ¤ò·¤¨¤ë (¡Á23nm) ¤È¹ßÉú±þÎϤ¬ 11 ÇÜÁý²Ã¡¢ dislocation ¤Î±¿Æ°¤¬Ë¸¤²¤é¤ì¤Æ¤¤¤ë¡¢ºîÀ½»þ¤ÎÊ̤ηç´Ù¤¬Æþ¤é¤Ê¤¤¡¢ ¤Ê¤É¤¬Íýͳ¤Ë¾å¤²¤é¤ì¤Æ¤¤¤ë¡£

¡÷ ZnO p-n homojunctions and ohmic contacts to Al-N-co-doped p-type ZnO:

pure N2O Ãæ¤Ç Zn:Al(0.4at%) ¥¿¡¼¥²¥Ã¥È¤«¤éÈ¿±þÀ­¥¹¥Ñ¥Ã¥¿¤¹¤ë¤³¤È¤Ç p ·¿ ZnO ¤òÆÀ¤Æ¤¤¤ë¡£¤ó¤Ç pure O2 Ãæ¤Ç Zn:Al(4%) ¤ò¥¹¥Ñ¥Ã¥¿¤·¤Æ n ·¿ ZnO¡£ pn Àܹç¤ÎÅŵ¤ÅªÆÃÀ­¡£In/Zn ¤ò contact ¤Ë»È¤¦¤È ohmic Àܹ礬¼è¤ì¤Æ¡¢ °ì±þ diode ÆÃÀ­ (¤ÈµÕ¦¤Ç¤Î¹ßÉúÆÃÀ­) ¤¬¼è¤ì¤Æ¤¤¤ë¡£ ¤³¤Î co-dope ¤Î p ·¿ ZnO ¤Ã¤Æͭ̾¤Ê¤Î¤«¤Ê¡£

¡÷ Pulsed-ion-beam nitriding and smoothing of titanium surface in a vacuum:

10^-2 Pa ¤Î vacuum (¤Ã¤Æ N2 ¤Ê¤ï¤±¤Ç¤Ï¤Ê¤¤¤Î¤«¡©¤Ê¤ó¤« RP ÇÓµ¤¤·¤¿´Ä¶­¤¯¤µ¤¤¡©) ¤Ç 1MV ¤Î proton ion beam ¤òÅö¤Æ¤Æ TiN ¤¬¤Ç¤­¤¿¤è¡¼¤È¤¤¤¦¤Î¤ò XRD ¤È hardness ¤Ç¸«¤¿Ïᣤ¢¤ÈɽÌ̤¬Ê¿Ã³²½¤·¤¿¤½¤¦¤Ê¡£¤¦¡¼¤à(°Ê²¼Î¬

#6 [labo] XPS ¬Äê

ÈÓ¼¤¯¤ó¤Î¥È¥ì¡¼¥Ë¥ó¥°¤ò·ó¤Í¤ÆºòÆü¤Î»îÎÁ (O2 1.5 sccm) ¤ò¬Äê¡£ ¤·¤«¤·¤Þ¤À·ë¹½Æ©ÌÀ¤À¤Ã¤¿¤ê¤¹¤ë¡£¤à¡¼¡£

#5 [URL] ÅìÂ綵¼ø¤ÎÏÀʸ¤Ë¡Öº¬µòÆÀ¤é¤ì¤º¡×Âç³Ø¤¬ºÆ¼Â¸³¤òÍ×ÀÁ

³Æ½ê¤ÇÏÃÂê¤Ë¤Ê¤Ã¤Æ¤¤¤ë¤è¤¦¤À¡£¤¦¡¼¤à¡£

#4 [dept] Planck Äê¿ô¬ÄêÁõÃÖ

21 ¤« 22 ¤ËǼÉʲÄǽ¤È¤Î¤³¤È¡£¤¢¤ê¤¬¤¿¤ä¡£

#3 [labo] ±ÑʸÎØÆÉ

¾¤ÎÌ̻Ҥ¬¥±¥Ä¤ò³ä¤ê (¾Ð)¡¢ÈÓ¼¤¯¤ó¡¢ÃçÅĤ¯¤ó¤Î¤Õ¤¿¤ê¡£ ºÇ¸å¤ÎÊý¡¢¤ä¤äÆñ¤·¤¯¤Ê¤Ã¤Æ¤­¤¿¡£ Íè½µ¤Ç½ª¤ï¤ì¤ë¤«¤Ê¡£ÂǤÁ¾å¤²¤òͽÄê¡£

#2 ¹Ô¤­

¸¶ÉÕ¡£¤¢¤Ä¤¤¡£

#1 µ¢¤ê

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2004ǯ09·î14Æü(²Ð) [nǯÆüµ­]

#7 [book] ¥°¥¤¥ó¡¦¥µ¡¼¥¬ 95

¥«¥á¥í¥ó¤¬µ¤¤ÎÆǤÇÀѤóÆɾõÂÖ¤À¤Ã¤¿¤¬¡¢ 96 ¤òÇã¤Ã¤Æ¤­¤¿¤Î¤Ç¤·¤«¤¿¤Ê¤¯Æɤó¤À¡£

#6 µ¢¤ê

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#5 [paper] º£Æü½¦¤Ã¤¿ÏÀʸ

¡÷ Metallic Adhesion in Atomic-Size Junctions:

We report high resolution simultaneous measurements of electrical conductance and force gradient between two sharp gold tips as their separation is varied from the tunneling distance to atomic-size contact. The use of atomically sharp tips minimizes van der Waals interaction, making it possible to identify the short-range metallic adhesion contribution to the total force.
force ¤Îɾ²Á¤Ë quartz fork ¤ò»È¤Ã¤Æ¤¤¤ë¤Î¤ÏÌÌÇò¤¤¡£

#4 [labo] ¥Þ¥Î¥á¡¼¥¿¥²¡¼¥¸

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#3 [labo] qcm ¼Â¸³

¹â¶¶¤¯¤ó¡¢Åļ£¸«¤µ¤ó¤È¡£50W 2¢ª1¢ª0.5 Pa¡¢ 100W 0.5 Pa ¤Î 84mm ¤Ç center ¤¬ FAIL¡£¤ä¤Ï¤ê¤«¡¼¡£

#2 [labo] M meeting

10:30¡Á12:10¡¢Ãæ´Öȯɽ¡¢¿¿¶õ¹Ö±é²ñ¤Ë¸þ¤±¤Æ¡£

#1 ¹Ô¤­

¼«Å¾¼Ö¡£av. ¤Ï¸«Ëº¤ì¤¿¡£
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2003ǯ09·î14Æü(Æü) [nǯÆüµ­]

#3 [labo] issp proceedings

OES ¸¶¹Æ¤Î¥Á¥§¥Ã¥¯¤ò boss ¤«¤é¤¤¤¿¤À¤¯¡£ ¤¢¤È¤Î 2 ·ï¤âº£ÆüÌÀÆü¤Ç²¿¤È¤«¡£

#2 [debian] locale Íí¤ß? 2 Âê

¤¤¤º¤ì¤â²òÅú¤ò¤¤¤¿¤À¤±¤Æ²ò·è¤·¤¿¡£¤¢¤ê¤¬¤¿¤¤¡£ ¸å¼Ô¤Ï reportbug ¤·¤¿¡£

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#1 ¹Ô¤­

Æü¤â·¹¤¤¤Æ¤«¤é¸¶ÉÕ¡£Í¼Êý¤Îµ¤Çۤϴ°Á´¤Ë½©¤Ê¤Î¤À¤¬¡£
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2002ǯ09·î14Æü(ÅÚ) [nǯÆüµ­]

#6 ssh

ssh-keygen ¤Ï¥Ç¥Õ¥©¥ë¥È¤Ç protocol version 1 ¤Î¸°¤òºî¤ë¤¯¤»¤Ë¡¢ slogin ¤Î¥Ç¥Õ¥©¥ë¥È¤¬ version 2 ¤Ë¤Ê¤Ã¤Æ¤ë¤«¤é³§¥Ï¥Þ¤ë¤Î¤À¤Ê¡£

¤¢¡¢¤¤¤Þ¤Ï -t ¤Ïɬ¿Ü¥ª¥×¥·¥ç¥ó¤Ê¤Î¤«¡£

#5 [JM] rpm ¼þ¤ê

16:50 ¤Ë commit¡£ÆüÉÕÊѹ¹Àþ¤¢¤¿¤ê¤ËÇÁ¤­¤Ë¤¤¤Ã¤Æ³Îǧ¤Ç¤¹¤Ê¡£

¤·¤Þ¤Ã¤¿¥À¥¦¥ó¥í¡¼¥É¤Î¥Ú¡¼¥¸¤¬ unavailable ¤Ë¡£ ¤Þ¤¢¤¢¤È¿ô»þ´Ö¤À¤«¤é¤Û¤Ã¤È¤¯¤«¡£

#4 Åй»

¡Ø³¤ÊդΥ«¥Õ¥«¡Ù¤ÎȯÁ÷ÄÌÃΤ¬ amazon ¤«¤é¤¢¤Ã¤¿¤Î¤Ç¡¢ ÆϤ¤¤Æ¤ë¤«¤È»×¤Ã¤ÆÍ褿¤Î¤À¤¬¤Þ¤À¤À¤Ã¤¿¡£ ¤¬¤Ã¤«¤ê¡£

#3 °éT

¤¦¤Á¤Ë¤âÅþÃå¡£ ¼ó¼þ¤ê¤¬¼«Ê¬¤Î¹¥¤ß¤«¤é¤¹¤ë¤È¿´»ý¤Á¥­¥Ä¥¤¤±¤É¡¢ È©¤¶¤ï¤ê¤È¤«¤Ï¹¥¤ß¤Ç¤¤¤¤´¶¤¸¤Ç¤¹¡£

#2 [dept] apserv ¢ª babarelay backup

¤ª¤«¤²¤µ¤Þ¤Ç²ò·è¤·¤¿¤Î¤Ç¡£

¤Þ¤º ssh ¤Î¥­¡¼¥Ú¥¢¤ò¤Ä¤¯¤ê¡¢ ¤µ¤é¤Ë ¤½¤ì¤¾¤ìÅÐÏ¿¡£

¤ó¤Ç¤â¤Ã¤Æ apserv:/etc/cron.daily/backup ¤Ë
#! /bin/sh
ssh -f -l apexp -L 10873:babarelay.ap.seikei.ac.jp:873 \
 babarelay.ap.seikei.ac.jp \
 ping -c 10 -i 60 localhost >& /dev/null

rsync -Havz --delete \
  --port 10873 \
  --exclude=var\/lib\/apt/ \
  --exclude=var/cache/apt/archives/ \
  /var /etc /home /usr/local localhost::backup-apserv
¤È¤¤¤¦¤Î¤òÊü¤ê¹þ¤ß¡¢ babarelay ¤Î rsyncd.conf ¤òŬÅö¤ËÊÔ½¸¡£¤¦¤à¡£

#1 ¶µ¤¨¤Æ¤¨¤é¤¤¿Í

 [surf(133.220.91.111)]  [babarelay (133.220.91.113)]
      |                         |
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        | 133.220.91.1
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        :                   ============
        | 133.220.YY.1      ¢­ 14 ¹æ´Û
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apserv% traceroute 133.220.91.111
traceroute to 133.220.91.111 (133.220.91.111), 30 hops max, 38 byte packets
 1  10.143.1.254 (10.143.1.254)  0.658 ms  0.511 ms  0.480 ms
 :
 5  apdgw.apd.seikei.ac.jp (133.220.XX.1)  4.525 ms  5.809 ms  4.993 ms
 6  surf.ap.seikei.ac.jp (133.220.91.111)  4.619 ms  5.734 ms  5.224 ms

apserv% traceroute 133.220.91.113
traceroute to 133.220.91.113 (133.220.91.113), 30 hops max, 38 byte packets
 1  10.143.1.254 (10.143.1.254)  0.648 ms  0.543 ms  0.495 ms
 :
 5  apdgw.apd.seikei.ac.jp (133.220.XX.1)  4.828 ms  5.649 ms  5.429 ms
 6  * * *
apdgw ¤«¤é¤Ï
apdgw% traceroute 133.220.91.111
traceroute to 133.220.91.111 (133.220.91.111), 30 hops max, 38 byte packets
 1  surf (133.220.91.111)  0.374 ms  0.239 ms  0.392 ms

apdgw% traceroute 133.220.91.113
traceroute to 133.220.91.113 (133.220.91.113), 30 hops max, 38 byte packets
 1  babarelay (133.220.91.113)  0.256 ms  0.227 ms  0.878 ms
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¡÷ 14a-ZV-2:

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¡÷ 14a-ZV-4:

opt multilayer ÌÜŪ¡£Ta2O5¡¢TiO2 ¤Î EB ¾øÃåÃæ¤Ë O ¥¯¥é¥¹¥¿¡¼¥¤¥ª¥ó¥Ó¡¼¥à¤Î±çÍÑ¡£ »³ÅÄÀèÀ¸¤Ïɱϩ¹©Âç¤Ë°Ü¤Ã¤¿¤Î¤«¡£ ʿó²½ (w/o ¤Ç Ta2O5 ¤Î RMS 2.1nm ¢ª 0.4nm)¡¢ ãÇÌ©²½¡¢°ÂÄê²½ (1h water boil ¤ÇÇÈĹ¥·¥Õ¥È 1.1%¢ª0.08%) ¤Ê¤É¡£

¡÷ 14a-ZV-5:

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¡÷ 14a-ZV-6:

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¡÷ 14a-ZV-7:

Àijإ°¥ë¡¼¥×¡£ reactive mag. ´ðÈÄ Rutile ¾å¤Ë¤Ï Rutile Áê¡¢ #7059, LSAT, MgO, STO, Sappire ¾å¤Ë¤Ï Anatase¡£ ¤È¤¯¤Ë STO ¾å¤Ï polar plot ¤·¤Æ¥¨¥Ô¤ò³Îǧ¡£ Ë칽¤¤ò Thornton ¤Î zone model ¤ËÍí¤á¤ÆµÄÏÀ¡£

¡÷ 14a-ZV-8:

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¡÷ 14a-ZV-11:

rf ¤Ç TiO2/SiO2¡£dark ¤Ë¤Û¤Ã¤È¤¯¤ÈǨ¤ìÀ­¤¬°­¤¯¤Ê¤ë TiO2 ¤Î ¥Õ¥©¥í¡¼¤Î¤¿¤á SiO2¡£ co-sputter ¤À¤È¤À¤á¤Ç¡¢ ÀÑÁØËì (SiO2 ¤¬ºÇɽÁØ) ¤Ë¤¹¤ë¤È´üÂÔÄ̤ê¤Î¤â¤Î¤¬¤Ç¤­¤¿¤È¤Î¤³¤È¡£ SiO2 ¤Ï island ¾õ¤Ëʬ»¶¤·¤Æ¤¤¤ë¤È¤¤¤¦²ò¼á¤Ê¤Î¤À¤í¤¦¡£

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#13 [LDP] 9/14 ¤Î updates

#12 [paper] MRS Bulletin 25(8) August 2000

Æ©ÌÀÅÁƳÀ­»À²½ÊªÆý¸¹æ¡£ Å칩Âç (µì) ÀîÉû¸¦¤ÎÆ©ÌÀ»À²½ÊªÈ¾Æ³ÂΤˤè¤ë pn Àܹç·ÁÀ®¡¢ ¶âÂô¹©Âç ÆîÀèÀ¸¤Ë¤è¤ë 3 ¸µ·Ï¤Î review ¤Û¤«¡£

#11 [paper] PRB 61(22-24) 1,15 June 2000

Ⱦ´üʬ½ª¤ï¤ê¡£22 ¤Ï¥Î¡¼¥Ò¥Ã¥È¡£

¡÷ PRB 61(23) pp.15649 (2000):

Liu ÀèÀ¸¤Î binary metal amorphization ¤Î¤ªÏᣠatomic volume ¤ÎÈæ¤È melting temperature ¤«¤é·è¤Þ¤ë ¦Ê¤È¤¤¤¦¥Ñ¥é¥á¡¼¥¿¤ÇÀ°Íý¤Ç¤­¤ë¡¢¤È¤¤¤¦¤Î¤¬º£²ó¤Î¿·µ¡¼´¡£

¡÷ PRB 61(23) pp.15993 (2000):

rough surface ¤Ë¤ª¤±¤ë exiton resonance ¶áÊդǤΠlight scattering ¤ÎÍýÏÀ¡£ first-order perturbation theory ¤Ç¤Î¼è¤ê°·¤¤¡£

¡÷ PRB 61(23) pp.16029 (2000):

III-V ·Ï²½¹çʪȾƳÂÎ¤Ç¤Î¥Ø¥Æ¥í¥¨¥Ô¤Ë¤ª¤±¤ë¡¢ lattice match/mismatch ¤È surface roughness ¤Î´Ø·¸¤ò strain relaxation ¤È´ØÏ¢¤µ¤»¤ÆµÄÏÀ¡£

¡÷ PRB 61(23) pp.16052 (2000):

Cu(InGa)Se2/CdS/ZnO ¤ÎÂÀÍÛÅÅÃÓ¹½Â¤¤ÎÅÁƳÆÃÀ­¡£ liq.N2 ²¹Åٰʲ¼¤Ç¡¢DC conductance ¤Ï variable range hopping model ¤Î T^-1/4 °Í¸¡¢¼þÇÈ¿ô°Í¸À­¤Ï ¦Ø^0.87 ¤ËÈæÎ㤹¤ë¤È¤¤¤¦·ë²Ì¡£ defect states ¤òÄ̤¸¤Æ¤Î carrier Í¢Á÷¤Ç¤¢¤ë¤È¤Î¹Í»¡¡£

¡÷ PRB 61(23) pp.16121 (2000):

Au/Si(111) ¤Î PEEM ¬Äê¡¢1x1 ¤Ê 1ML Au ¤È 7x7 Si ¤Î¶­³¦¤¬¡¢¥¢¥Ë¡¼¥ë¤È¤È¤â¤Ë 5x1, ­õ3x­õ3 ¤ÈÎΰ褬¹­¤¬¤Ã¤Æ¤¤¤¯¤Î¤ò´Ñ»¡¡¢ diff. consts ¤òµá¤á¤Æ¤¤¤ë¡£ 985K ¤Ç¡¢ 7x7 ¾å 5.2x10^-8 cm^2/s¡¢5x1 ¾å 1.2x10^-7 cm^2/s ¤È¤Î·ë²Ì¡£

¡÷ PRB 61(23) pp.16137 (2000):

TiN(001)/MgO ¤Ê¥¨¥Ô¤òÈ¿±þÀ­ dc ¥¹¥Ñ¥Ã¥¿¤ÇÀ®Ä¹¡¢ STM ´Ñ»¡¡£ ´ðÈIJ¹ÅÙ¤Ï 650¡Á750¡î anode ¤ò°ì¸Ä;·×¤ËÆþ¤ì¤Æ N+ flux ¤Îenergy ¤ò¥³¥ó¥È¥í¡¼¥ë¡¢ 43eV ÄøÅ٤Ρ¢defect production threshold ÊÕ¤ê¤Î¥¨¥Í¥ë¥®¡¼¤À¤È¡¢ roushness ¤¬¸º¾¯¤¹¤ë¡¢¤È¤Î·ë²Ì¡£ Ê£¿ô¤Î layered mound ¤«¤é¤Ê¤ë¹½Â¤¤¬¤Ç¤­¤ë¤¬¡¢¤½¤Î´Ö³Ö¤¬¹­¤¬¤ë¤È¤«¡£ top layer ¤Î critical radius ¤Ë¤Ä¤¤¤Æ¤â¸ÀµÚ¡£

¡÷ PRB 61(24) pp.R16355 (2000):

ɽÌ̤βóÀޤȡ¢¥Ð¥ë¥¯¤Ç°ì²ó²óÀÞ¤·¤¿ flux ¤Ë¤è¤ë»¶Íð¤Î´³¾Ä¤Ç¡¢ ɽÌ̲óÀޤΠphase ¤¬¤ï¤«¤ë¤ó¤Ç¤Ï¤Ê¤¤¤«¤È¤ÎÄó°Æ¡£ Ge(113)-3x1 ¹½Â¤¤Ç ¼ÂºÝ¤Ë X Àþ¤ò¤¢¤Æ¤Æ´³¾Ä¤¬À¸¤¸¤ë¤Î¤ò demonstrate ¤·¤Æ¤¤¤ë¡£

¡÷ PRB 61(24) pp.16948 (2000):

MgO(100)/Ag(100) ¤Î UPS & XPS/Auger ¬Äê¡£ O 2p ¤¬ Ag 5sp ¤È¶¯¤¯º®À®¤¹¤ë¤³¤È¡¢ ¤Þ¤¿¤³¤Î·Ï¤¬ H2O ¤Î chemisorption ¤ËÈó¾ï¤ËÂ礭¤ÊÈ¿±þÀ­¤ò»ý¤Ã¤Æ¤ª¤ê¡¢ ÅŻҾõÂ֤Ȳ¿¤é¤«¤Î´Ø·¸¤¬¤¢¤ë¤Î¤Ç¤Ï¤Ê¤¤¤«¤ÈµÄÏÀ¡£

#10 [paper] JJAP (part1) 39(7B,8) July, August 2000

7B ¤Ï special issue¡£ "Surface Science for Micro- and Nano-Device Fabrication" ¤ÈÂꤷ¤Æ¡¢ºòǯ 12 ·î¤ËÁá°ðÅĤdz«¤«¤ì¤¿ ISSS-3 ¤Î proc ½¸¡£ ÆÃ¤Ë hit ¤Ï¤Ê¤·¡£

¡÷ JJAP (part1) 39(8) pp.4733 (2000):

p-Si/N2O/TiN ¤Î capacitor ¤Ç TiN depo Ãæ¤Ë¼õ¤±¤ë¥À¥á¡¼¥¸¤ò Rapid Thermal Annealing ¤Ç²óÉü¡¢flat-band voltage ¤È ³¦Ì̤ξõÂÖÌ©ÅÙ¤òɾ²Á¡£ post treatment ¤È¤·¤Æ¡¢N2 ¥×¥é¥º¥Þ¤Ç½èÍý¤·¤Æ¤¢¤²¤ë¤È leak current ¤¬ ÍÞÀ©¤Ç¤­¤ë¤È¤«¡£

¡÷ JJAP (part1) 39(8) pp.4816 (2000):

Å칩Â羮Ĺ°æ¸¦¤Î¥°¥ë¡¼¥×¡£ Cu(InGa)Se2 ¤ÎÀ®Ä¹ºÇ½ªÃʳ¬¤Ç Zn ¤ò¥É¡¼¥Ô¥ó¥°¤·¤Æ p¢ªn conversion ¤òÀ¸¤¸¤µ¤»¡¢ pn ¤Î homojunction ¤òºî¤í¤¦¤È¤¹¤ë»î¤ß¡£ CIGS À®Ä¹¸å¤Ë Zn flux ¤òÅö¤Æ¤ë¤«¤¿¤Á¤Ç¡¢ÂÀÍÛÅÅÃÓÆÃÀ­¤¬¸þ¾å¡£ ºÇ¸å¤ÎÊý¤Î In+Ga+Se flux ¤Ë Zn ¤òº®¤¼¤ë¤ä¤êÊý¤Ï¤¢¤Þ¤êÎɤ¯¤Ê¤«¤Ã¤¿¤È¤Î¤³¤È¡£

¡÷ JJAP (part1) 39(8) pp.4890 (2000):

Íý²ÊÂç»°±º¤µ¤ó¡£0.1 Pa °Ê²¼ÄøÅ٤ΠMagnetron discharge ¤Ç¡¢ electron ¤Î escape ¤ò¹Íθ¤ËÆþ¤ì¤¿ÊüÅÅ¥â¥Ç¥ë¡£ÅÅή¤ò°µÎϤdzä¤Ã¤¿ "Discharge Intensity" ¤¬ÊüÅÅÅÅ°µ¡¦°µÎÏ¡¦¼§¾ì¤Ë¤É¤¦°Í¸¤¹¤ë¤«¤ÇÀ°Íý¡£ ¼Â¸³¤È¤ÎÈæ³Ó¤â¤¢¤ë¡£

#9 [paper] JJAP (part2) 39(8A,8B) 1,15 August 2000

¡÷ JJAP (part2) 39(8A) pp.L847 (2000):

TiO2 ·ë¾½ (Rutile, Anatase) ¤Î¥Ð¥ó¥É·×»»¡£ Troullier-Martinse type ¤È Teter type ¤Î pseudopotential ¤ò»È¤Ã¤¿ LDA¡£

¡÷ JJAP (part2) 39(8B) pp. (2000):

ÃÞÇÈÂ祰¥ë¡¼¥×¡£Cu2O Ëì¤Î reactive RF magnetron ¥¹¥Ñ¥Ã¥¿¡£ XRD ¤Ë¤è¤ë·ë¾½À­¡¢Æ©²á¥¹¥Ú¥¯¥È¥ë¤«¤é¥Ð¥ó¥É¥®¥ã¥Ã¥×¡¢ Hall ¬Äê¡¢AFM morphorogy¡£´ðÈIJ¹ÅÙ (RT, 400¡î, 500¡î) ¤ÇÀ°Íý¡£

#8 [URI] GRI

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#7 [URL] squid ¤Î¥í¥°²òÀÏ

¡÷ Squid Cache Logfile Analysis Scripts:

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¡÷ webalizer:

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#6 [URL] ·×»»´ØÏ¢¤Î RPM's

¡÷ RPM resources lapack:

¡÷ slatec-dynamic-4.1-1.i386 RPM:

#5 [linux] Kondara2000

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#4 [linux] [debian-users:24034] Re: font with platex (Re: [Q]latex)

Æ£¸¶¤µ¤ó @ debian-users:
> platex ¤Î½Ä½ñ¤­¤Ç ÌÀÄ«¡¢¥´¥·¥Ã¥¯ °Ê³°¤Î¥Õ¥©¥ó¥È¤ò»È¤¦¤Ë¤Ï¤É¤¦¤·¤¿¤é¤¤
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#3 [labo] AVS proceedings (3)

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#2 É÷¼Ù¤Ê¤ª¤Ã¤¿¡©

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#1 PRL 85(1-3) 3,10,17 July 2000

85(1) ¤Ï¥Î¡¼¥Ò¥Ã¥È¡£

¡÷ PRL 85(2) pp.326 (2000):

Al(111) ¤ò 300K ¤Ç 1keV ¤Î Xe+ ¤Çᤤ¤Æ STM ´Ñ»¡¡£ Ä̾ï¤ÎÁÛÁü¤È¤ÏµÕ¤Ë¡¢À¹¤ê¾å¤¬¤Ã¤¿ island ¹½Â¤¤¬ (¤·¤«¤â²¿ÁؤˤâÀѤ߽ŤʤäÆ) ¤Ç¤­¤ë¡¢¤È¤Î·ë²Ì¡£ Thermal spike ¤Ç¡¢ ɽÌ̳°¤à¤­¤Ø¤Î atomic flow ¤¬À¸¤¸¤ë¤Î¤À¡¢¤È¤Î¥â¥Ç¥ë¤òÄó°Æ¤·¤Æ¤¤¤ë¡£

¡÷ PRL 85(2) pp.349 (2000):

Ç®»À²½¤µ¤»¤¿ SiO2/Si ³¦Ì̤òÂÐ¾Ý¤Ë pit ¤ò¥ê¥½¤·¤Æ¡¢ ÁƤµ¤ò light scattering ¤Çɾ²Á¡£ 4 ¼ïÎà¤ÎÇÈĹ¤È 3 ¼ïÎà¤ÎÆþ¼Í³Ñ¤Ç ellipsometry ¤·¡¢É½ÌÌ¡¦³¦Ì̤ÎÁƤµ¤òɾ²Á¤·¤Æ¤¤¤ë¡£ multilayer ¤ò°·¤¦¤Î¤Ë¤Ï¡¢ first-order vector perturvation theory ¤È¤¤¤¦¤Î¤ò»È¤Ã¤Æ¤¤¤ë¤é¤·¤¤¡£

¡÷ PRL 85(3) pp.495 (2000):

X ÀþÇÈĹɸ½à¤ò¡¢Fe ¤Î Mossbauer ¸ú²Ì¤ò»È¤Ã¤Æ¤Ä¤¯¤ë»î¤ß¡£ 0.86 angstrom ¤ÎÇÈŤ¬ 0.19ppm ¥ª¡¼¥À¡¼¤Çµá¤Þ¤Ã¤Æ¤¤¤ë¡£

¡÷ PRL 85(3) pp.606 (2000):

Cu(111) Ì̾å¤Ç¤Î Cu ¤Î diffusion ¤¬¡¢ sulfer ¤¬µÛÃ夷¤¿É½Ì̤ǤÏÂ礭¤¯¤Ê¤ë¸½¾Ý¤¬¤¢¤ë¤½¤¦¤Ê¤Î¤À¤¬¡¢ ¤³¤ì¤ò Cu3S3 ¥¯¥é¥¹¥¿¤ò VASP ¤È¤¤¤¦ ab initio calc. ¤Ç°·¤¤¡¢ ɾ²Á¤·¤Æ¤ß¤¿Ïᣤ³¤¤¤Ä¤Ï formation energy 0.28eV ¤Ç½ÐÍè¡¢ diffusion barrier ¤Ï 0.35eV °Ê²¼¤Ë¤Ê¤ë¤È¤Î·×»»·ë²Ì¡£

¡÷ PRL 85(3) pp.614 (2000):

binary deposition ¤Î phase separation ¤È surface roughness ¤ò "brick wall" model ¤Ç¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¤¹¤ë»î¤ß¡£
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