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Present Status and Future of DCC Analysis

Disoriented Chiral Condensates (DCC) have been predicted to form in high energy heavy ion collisions where the approximate chiral symmetry of QCD has been restored. This leads to large imbalances in the production of charged to neutral pions. Sophisticated analysis methods are being developed to dis...

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Detalles Bibliográficos
Autores principales: Nayak, Tapank K., Aggarwal, M.M., Agnihotri, A., Ahammed, Z., Angelis, A.L.S., Antonenko, V., Arefev, V., Astakhov, V., Avdeichikov, V., Awes, T.C., Baba, P.V.K.S., Badyal, S.K., Baldine, A., Barabach, L., Barlag, C., Bathe, S., Batyunya, B., Bernier, T., Bhalla, K.B., Bhatia, V.S., Blume, C., Bock, R., Bohne, E.M., Bucher, D., Buijs, A., Buis, E.J., Busching, H., Carlen, L., Chalyshev, V., Chattopadhyay, S., Chenawi, K.E., Cherbachev, R., Chujo, T., Claussen, A., Das, A.C., Decowski, M.P., Dzhordzhadze, V., Donni, P., Dubovik, I., Dutta Majumdar, M.R., Eliseev, S., Enosawa, K., Feldmann, H., Foka, P., Fokin, S., Frolov, V., Ganti, M.S., Garpman, S., Gavrishchuk, O., Geurts, F.J.M., Ghosh, T.K., Glasow, R., Gupta, S.K., Guskov, B., Gustafsson, H.A., Gutbrod, H.H., Higuchi, R., Hrivnacova, I., Ippolitov, M., Kalechofsky, H., Kamermans, R., Kampert, K.H., Karadzhev, K., Karpio, K., Kato, S., Kees, S., Kim, H., Kolb, B.W., Kosarev, I., Kucheryaev, I., Kugler, A., Kulinich, P., Kumar, V., Kurata, M., Kurita, K., Kuzmin, N., Langbein, I., Lebedev, A., Lee, Y.Y., Lohner, H., Mahapatra, D.P., Manko, V., Martin, M., Maximov, A., Mehdiyev, Rashid R., Mgebrichvili, G., Miake, Y., Mikhalev, D., Mishra, G.C., Miyamoto, Y., Morrison, Douglas R.O., Mukhopadhyay, D.S., Myalkovsky, V., Naef, H., Nandi, B.K., Nayak, S.K., Neumaier, S., Nianine, A., Nikitin, V., Nikolaev, S., Nishimura, S., Nomokov, P., Nystrand, J., Obenshain, F.E., Oskarsson, A., Otterlund, I., Pachr, M., Parfenov, A., Pavliouk, S., Peitzmann, T., Petracek, V., Plasil, F., Purschke, M.L., Raeven, B., Rak, J., Raniwala, S., Ramamurthy, V.S., Rao, N.K., Retiere, F., Reygers, K., Roland, G., Rosselet, L., Roufanov, I., Rubio, J.M., Sambyal, S.S., Santo, R., Sato, S., Schlagheck, H., Schmidt, H.R., Shabratova, G., Sibaryak, I., Siemiarczuk, T., Sinha, B.C., Slavin, N., Soderstrom, K., Solomey, N., Sorensen, S.P., Stankus, P., Stefanek, G., Steinberg, P., Stenlund, E., Stuken, D., Sumbera, M., Svensson, T., Trivedi, M.D., Tsvetkov, A., Twenhofel, C., Tykarski, L., Urbahn, J., van Eijndhoven, N., van Heeringen, W.H., van Nieuwenhuizen, G.J., Vinogradov, A., Viyogi, Y.P., Vodopianov, A.S., Voros, S., Vos, M.A., Wyslouch, B., Yagi, K., Yokota, Y., Young, G.R.
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0375-9474(98)00358-3
http://cds.cern.ch/record/346720
_version_ 1780891919058993152
author Nayak, Tapank K.
Aggarwal, M.M.
Agnihotri, A.
Ahammed, Z.
Angelis, A.L.S.
Antonenko, V.
Arefev, V.
Astakhov, V.
Avdeichikov, V.
Awes, T.C.
Baba, P.V.K.S.
Badyal, S.K.
Baldine, A.
Barabach, L.
Barlag, C.
Bathe, S.
Batyunya, B.
Bernier, T.
Bhalla, K.B.
Bhatia, V.S.
Blume, C.
Bock, R.
Bohne, E.M.
Bucher, D.
Buijs, A.
Buis, E.J.
Busching, H.
Carlen, L.
Chalyshev, V.
Chattopadhyay, S.
Chenawi, K.E.
Cherbachev, R.
Chujo, T.
Claussen, A.
Das, A.C.
Decowski, M.P.
Dzhordzhadze, V.
Donni, P.
Dubovik, I.
Dutta Majumdar, M.R.
Eliseev, S.
Enosawa, K.
Feldmann, H.
Foka, P.
Fokin, S.
Frolov, V.
Ganti, M.S.
Garpman, S.
Gavrishchuk, O.
Geurts, F.J.M.
Ghosh, T.K.
Glasow, R.
Gupta, S.K.
Guskov, B.
Gustafsson, H.A.
Gutbrod, H.H.
Higuchi, R.
Hrivnacova, I.
Ippolitov, M.
Kalechofsky, H.
Kamermans, R.
Kampert, K.H.
Karadzhev, K.
Karpio, K.
Kato, S.
Kees, S.
Kim, H.
Kolb, B.W.
Kosarev, I.
Kucheryaev, I.
Kugler, A.
Kulinich, P.
Kumar, V.
Kurata, M.
Kurita, K.
Kuzmin, N.
Langbein, I.
Lebedev, A.
Lee, Y.Y.
Lohner, H.
Mahapatra, D.P.
Manko, V.
Martin, M.
Maximov, A.
Mehdiyev, Rashid R.
Mgebrichvili, G.
Miake, Y.
Mikhalev, D.
Mishra, G.C.
Miyamoto, Y.
Morrison, Douglas R.O.
Mukhopadhyay, D.S.
Myalkovsky, V.
Naef, H.
Nandi, B.K.
Nayak, S.K.
Neumaier, S.
Nianine, A.
Nikitin, V.
Nikolaev, S.
Nishimura, S.
Nomokov, P.
Nystrand, J.
Obenshain, F.E.
Oskarsson, A.
Otterlund, I.
Pachr, M.
Parfenov, A.
Pavliouk, S.
Peitzmann, T.
Petracek, V.
Plasil, F.
Purschke, M.L.
Raeven, B.
Rak, J.
Raniwala, S.
Ramamurthy, V.S.
Rao, N.K.
Retiere, F.
Reygers, K.
Roland, G.
Rosselet, L.
Roufanov, I.
Rubio, J.M.
Sambyal, S.S.
Santo, R.
Sato, S.
Schlagheck, H.
Schmidt, H.R.
Shabratova, G.
Sibaryak, I.
Siemiarczuk, T.
Sinha, B.C.
Slavin, N.
Soderstrom, K.
Solomey, N.
Sorensen, S.P.
Stankus, P.
Stefanek, G.
Steinberg, P.
Stenlund, E.
Stuken, D.
Sumbera, M.
Svensson, T.
Trivedi, M.D.
Tsvetkov, A.
Twenhofel, C.
Tykarski, L.
Urbahn, J.
van Eijndhoven, N.
van Heeringen, W.H.
van Nieuwenhuizen, G.J.
Vinogradov, A.
Viyogi, Y.P.
Vodopianov, A.S.
Voros, S.
Vos, M.A.
Wyslouch, B.
Yagi, K.
Yokota, Y.
Young, G.R.
author_facet Nayak, Tapank K.
Aggarwal, M.M.
Agnihotri, A.
Ahammed, Z.
Angelis, A.L.S.
Antonenko, V.
Arefev, V.
Astakhov, V.
Avdeichikov, V.
Awes, T.C.
Baba, P.V.K.S.
Badyal, S.K.
Baldine, A.
Barabach, L.
Barlag, C.
Bathe, S.
Batyunya, B.
Bernier, T.
Bhalla, K.B.
Bhatia, V.S.
Blume, C.
Bock, R.
Bohne, E.M.
Bucher, D.
Buijs, A.
Buis, E.J.
Busching, H.
Carlen, L.
Chalyshev, V.
Chattopadhyay, S.
Chenawi, K.E.
Cherbachev, R.
Chujo, T.
Claussen, A.
Das, A.C.
Decowski, M.P.
Dzhordzhadze, V.
Donni, P.
Dubovik, I.
Dutta Majumdar, M.R.
Eliseev, S.
Enosawa, K.
Feldmann, H.
Foka, P.
Fokin, S.
Frolov, V.
Ganti, M.S.
Garpman, S.
Gavrishchuk, O.
Geurts, F.J.M.
Ghosh, T.K.
Glasow, R.
Gupta, S.K.
Guskov, B.
Gustafsson, H.A.
Gutbrod, H.H.
Higuchi, R.
Hrivnacova, I.
Ippolitov, M.
Kalechofsky, H.
Kamermans, R.
Kampert, K.H.
Karadzhev, K.
Karpio, K.
Kato, S.
Kees, S.
Kim, H.
Kolb, B.W.
Kosarev, I.
Kucheryaev, I.
Kugler, A.
Kulinich, P.
Kumar, V.
Kurata, M.
Kurita, K.
Kuzmin, N.
Langbein, I.
Lebedev, A.
Lee, Y.Y.
Lohner, H.
Mahapatra, D.P.
Manko, V.
Martin, M.
Maximov, A.
Mehdiyev, Rashid R.
Mgebrichvili, G.
Miake, Y.
Mikhalev, D.
Mishra, G.C.
Miyamoto, Y.
Morrison, Douglas R.O.
Mukhopadhyay, D.S.
Myalkovsky, V.
Naef, H.
Nandi, B.K.
Nayak, S.K.
Neumaier, S.
Nianine, A.
Nikitin, V.
Nikolaev, S.
Nishimura, S.
Nomokov, P.
Nystrand, J.
Obenshain, F.E.
Oskarsson, A.
Otterlund, I.
Pachr, M.
Parfenov, A.
Pavliouk, S.
Peitzmann, T.
Petracek, V.
Plasil, F.
Purschke, M.L.
Raeven, B.
Rak, J.
Raniwala, S.
Ramamurthy, V.S.
Rao, N.K.
Retiere, F.
Reygers, K.
Roland, G.
Rosselet, L.
Roufanov, I.
Rubio, J.M.
Sambyal, S.S.
Santo, R.
Sato, S.
Schlagheck, H.
Schmidt, H.R.
Shabratova, G.
Sibaryak, I.
Siemiarczuk, T.
Sinha, B.C.
Slavin, N.
Soderstrom, K.
Solomey, N.
Sorensen, S.P.
Stankus, P.
Stefanek, G.
Steinberg, P.
Stenlund, E.
Stuken, D.
Sumbera, M.
Svensson, T.
Trivedi, M.D.
Tsvetkov, A.
Twenhofel, C.
Tykarski, L.
Urbahn, J.
van Eijndhoven, N.
van Heeringen, W.H.
van Nieuwenhuizen, G.J.
Vinogradov, A.
Viyogi, Y.P.
Vodopianov, A.S.
Voros, S.
Vos, M.A.
Wyslouch, B.
Yagi, K.
Yokota, Y.
Young, G.R.
author_sort Nayak, Tapank K.
collection CERN
description Disoriented Chiral Condensates (DCC) have been predicted to form in high energy heavy ion collisions where the approximate chiral symmetry of QCD has been restored. This leads to large imbalances in the production of charged to neutral pions. Sophisticated analysis methods are being developed to disentangle DCC events out of the large background of events with conventionally produced particles. We present a short review of current analysis methods and future prospects.
id cern-346720
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
record_format invenio
spelling cern-3467202021-09-30T07:56:08Zdoi:10.1016/S0375-9474(98)00358-3http://cds.cern.ch/record/346720engNayak, Tapank K.Aggarwal, M.M.Agnihotri, A.Ahammed, Z.Angelis, A.L.S.Antonenko, V.Arefev, V.Astakhov, V.Avdeichikov, V.Awes, T.C.Baba, P.V.K.S.Badyal, S.K.Baldine, A.Barabach, L.Barlag, C.Bathe, S.Batyunya, B.Bernier, T.Bhalla, K.B.Bhatia, V.S.Blume, C.Bock, R.Bohne, E.M.Bucher, D.Buijs, A.Buis, E.J.Busching, H.Carlen, L.Chalyshev, V.Chattopadhyay, S.Chenawi, K.E.Cherbachev, R.Chujo, T.Claussen, A.Das, A.C.Decowski, M.P.Dzhordzhadze, V.Donni, P.Dubovik, I.Dutta Majumdar, M.R.Eliseev, S.Enosawa, K.Feldmann, H.Foka, P.Fokin, S.Frolov, V.Ganti, M.S.Garpman, S.Gavrishchuk, O.Geurts, F.J.M.Ghosh, T.K.Glasow, R.Gupta, S.K.Guskov, B.Gustafsson, H.A.Gutbrod, H.H.Higuchi, R.Hrivnacova, I.Ippolitov, M.Kalechofsky, H.Kamermans, R.Kampert, K.H.Karadzhev, K.Karpio, K.Kato, S.Kees, S.Kim, H.Kolb, B.W.Kosarev, I.Kucheryaev, I.Kugler, A.Kulinich, P.Kumar, V.Kurata, M.Kurita, K.Kuzmin, N.Langbein, I.Lebedev, A.Lee, Y.Y.Lohner, H.Mahapatra, D.P.Manko, V.Martin, M.Maximov, A.Mehdiyev, Rashid R.Mgebrichvili, G.Miake, Y.Mikhalev, D.Mishra, G.C.Miyamoto, Y.Morrison, Douglas R.O.Mukhopadhyay, D.S.Myalkovsky, V.Naef, H.Nandi, B.K.Nayak, S.K.Neumaier, S.Nianine, A.Nikitin, V.Nikolaev, S.Nishimura, S.Nomokov, P.Nystrand, J.Obenshain, F.E.Oskarsson, A.Otterlund, I.Pachr, M.Parfenov, A.Pavliouk, S.Peitzmann, T.Petracek, V.Plasil, F.Purschke, M.L.Raeven, B.Rak, J.Raniwala, S.Ramamurthy, V.S.Rao, N.K.Retiere, F.Reygers, K.Roland, G.Rosselet, L.Roufanov, I.Rubio, J.M.Sambyal, S.S.Santo, R.Sato, S.Schlagheck, H.Schmidt, H.R.Shabratova, G.Sibaryak, I.Siemiarczuk, T.Sinha, B.C.Slavin, N.Soderstrom, K.Solomey, N.Sorensen, S.P.Stankus, P.Stefanek, G.Steinberg, P.Stenlund, E.Stuken, D.Sumbera, M.Svensson, T.Trivedi, M.D.Tsvetkov, A.Twenhofel, C.Tykarski, L.Urbahn, J.van Eijndhoven, N.van Heeringen, W.H.van Nieuwenhuizen, G.J.Vinogradov, A.Viyogi, Y.P.Vodopianov, A.S.Voros, S.Vos, M.A.Wyslouch, B.Yagi, K.Yokota, Y.Young, G.R.Present Status and Future of DCC AnalysisParticle Physics - ExperimentDisoriented Chiral Condensates (DCC) have been predicted to form in high energy heavy ion collisions where the approximate chiral symmetry of QCD has been restored. This leads to large imbalances in the production of charged to neutral pions. Sophisticated analysis methods are being developed to disentangle DCC events out of the large background of events with conventionally produced particles. We present a short review of current analysis methods and future prospects.Disoriented Chiral Condensates (DCC) have been predicted to form in high energy heavy ion collisions where the approximate chiral symmetry of QCD has been restored. This leads to large imbalances in the production of charged to neutral pions. Sophisticated analysis methods are being developed to disentangle DCC events out of the large background of events with conventionally produced particles. We present a short review of current analysis methods and future prospects.hep-ex/9802019VECC-NEX-01VECC-NEX-98-01oai:cds.cern.ch:3467201998
spellingShingle Particle Physics - Experiment
Nayak, Tapank K.
Aggarwal, M.M.
Agnihotri, A.
Ahammed, Z.
Angelis, A.L.S.
Antonenko, V.
Arefev, V.
Astakhov, V.
Avdeichikov, V.
Awes, T.C.
Baba, P.V.K.S.
Badyal, S.K.
Baldine, A.
Barabach, L.
Barlag, C.
Bathe, S.
Batyunya, B.
Bernier, T.
Bhalla, K.B.
Bhatia, V.S.
Blume, C.
Bock, R.
Bohne, E.M.
Bucher, D.
Buijs, A.
Buis, E.J.
Busching, H.
Carlen, L.
Chalyshev, V.
Chattopadhyay, S.
Chenawi, K.E.
Cherbachev, R.
Chujo, T.
Claussen, A.
Das, A.C.
Decowski, M.P.
Dzhordzhadze, V.
Donni, P.
Dubovik, I.
Dutta Majumdar, M.R.
Eliseev, S.
Enosawa, K.
Feldmann, H.
Foka, P.
Fokin, S.
Frolov, V.
Ganti, M.S.
Garpman, S.
Gavrishchuk, O.
Geurts, F.J.M.
Ghosh, T.K.
Glasow, R.
Gupta, S.K.
Guskov, B.
Gustafsson, H.A.
Gutbrod, H.H.
Higuchi, R.
Hrivnacova, I.
Ippolitov, M.
Kalechofsky, H.
Kamermans, R.
Kampert, K.H.
Karadzhev, K.
Karpio, K.
Kato, S.
Kees, S.
Kim, H.
Kolb, B.W.
Kosarev, I.
Kucheryaev, I.
Kugler, A.
Kulinich, P.
Kumar, V.
Kurata, M.
Kurita, K.
Kuzmin, N.
Langbein, I.
Lebedev, A.
Lee, Y.Y.
Lohner, H.
Mahapatra, D.P.
Manko, V.
Martin, M.
Maximov, A.
Mehdiyev, Rashid R.
Mgebrichvili, G.
Miake, Y.
Mikhalev, D.
Mishra, G.C.
Miyamoto, Y.
Morrison, Douglas R.O.
Mukhopadhyay, D.S.
Myalkovsky, V.
Naef, H.
Nandi, B.K.
Nayak, S.K.
Neumaier, S.
Nianine, A.
Nikitin, V.
Nikolaev, S.
Nishimura, S.
Nomokov, P.
Nystrand, J.
Obenshain, F.E.
Oskarsson, A.
Otterlund, I.
Pachr, M.
Parfenov, A.
Pavliouk, S.
Peitzmann, T.
Petracek, V.
Plasil, F.
Purschke, M.L.
Raeven, B.
Rak, J.
Raniwala, S.
Ramamurthy, V.S.
Rao, N.K.
Retiere, F.
Reygers, K.
Roland, G.
Rosselet, L.
Roufanov, I.
Rubio, J.M.
Sambyal, S.S.
Santo, R.
Sato, S.
Schlagheck, H.
Schmidt, H.R.
Shabratova, G.
Sibaryak, I.
Siemiarczuk, T.
Sinha, B.C.
Slavin, N.
Soderstrom, K.
Solomey, N.
Sorensen, S.P.
Stankus, P.
Stefanek, G.
Steinberg, P.
Stenlund, E.
Stuken, D.
Sumbera, M.
Svensson, T.
Trivedi, M.D.
Tsvetkov, A.
Twenhofel, C.
Tykarski, L.
Urbahn, J.
van Eijndhoven, N.
van Heeringen, W.H.
van Nieuwenhuizen, G.J.
Vinogradov, A.
Viyogi, Y.P.
Vodopianov, A.S.
Voros, S.
Vos, M.A.
Wyslouch, B.
Yagi, K.
Yokota, Y.
Young, G.R.
Present Status and Future of DCC Analysis
title Present Status and Future of DCC Analysis
title_full Present Status and Future of DCC Analysis
title_fullStr Present Status and Future of DCC Analysis
title_full_unstemmed Present Status and Future of DCC Analysis
title_short Present Status and Future of DCC Analysis
title_sort present status and future of dcc analysis
topic Particle Physics - Experiment
url https://dx.doi.org/10.1016/S0375-9474(98)00358-3
http://cds.cern.ch/record/346720
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AT kosarevi presentstatusandfutureofdccanalysis
AT kucheryaevi presentstatusandfutureofdccanalysis
AT kuglera presentstatusandfutureofdccanalysis
AT kulinichp presentstatusandfutureofdccanalysis
AT kumarv presentstatusandfutureofdccanalysis
AT kuratam presentstatusandfutureofdccanalysis
AT kuritak presentstatusandfutureofdccanalysis
AT kuzminn presentstatusandfutureofdccanalysis
AT langbeini presentstatusandfutureofdccanalysis
AT lebedeva presentstatusandfutureofdccanalysis
AT leeyy presentstatusandfutureofdccanalysis
AT lohnerh presentstatusandfutureofdccanalysis
AT mahapatradp presentstatusandfutureofdccanalysis
AT mankov presentstatusandfutureofdccanalysis
AT martinm presentstatusandfutureofdccanalysis
AT maximova presentstatusandfutureofdccanalysis
AT mehdiyevrashidr presentstatusandfutureofdccanalysis
AT mgebrichvilig presentstatusandfutureofdccanalysis
AT miakey presentstatusandfutureofdccanalysis
AT mikhalevd presentstatusandfutureofdccanalysis
AT mishragc presentstatusandfutureofdccanalysis
AT miyamotoy presentstatusandfutureofdccanalysis
AT morrisondouglasro presentstatusandfutureofdccanalysis
AT mukhopadhyayds presentstatusandfutureofdccanalysis
AT myalkovskyv presentstatusandfutureofdccanalysis
AT naefh presentstatusandfutureofdccanalysis
AT nandibk presentstatusandfutureofdccanalysis
AT nayaksk presentstatusandfutureofdccanalysis
AT neumaiers presentstatusandfutureofdccanalysis
AT nianinea presentstatusandfutureofdccanalysis
AT nikitinv presentstatusandfutureofdccanalysis
AT nikolaevs presentstatusandfutureofdccanalysis
AT nishimuras presentstatusandfutureofdccanalysis
AT nomokovp presentstatusandfutureofdccanalysis
AT nystrandj presentstatusandfutureofdccanalysis
AT obenshainfe presentstatusandfutureofdccanalysis
AT oskarssona presentstatusandfutureofdccanalysis
AT otterlundi presentstatusandfutureofdccanalysis
AT pachrm presentstatusandfutureofdccanalysis
AT parfenova presentstatusandfutureofdccanalysis
AT pavliouks presentstatusandfutureofdccanalysis
AT peitzmannt presentstatusandfutureofdccanalysis
AT petracekv presentstatusandfutureofdccanalysis
AT plasilf presentstatusandfutureofdccanalysis
AT purschkeml presentstatusandfutureofdccanalysis
AT raevenb presentstatusandfutureofdccanalysis
AT rakj presentstatusandfutureofdccanalysis
AT raniwalas presentstatusandfutureofdccanalysis
AT ramamurthyvs presentstatusandfutureofdccanalysis
AT raonk presentstatusandfutureofdccanalysis
AT retieref presentstatusandfutureofdccanalysis
AT reygersk presentstatusandfutureofdccanalysis
AT rolandg presentstatusandfutureofdccanalysis
AT rosseletl presentstatusandfutureofdccanalysis
AT roufanovi presentstatusandfutureofdccanalysis
AT rubiojm presentstatusandfutureofdccanalysis
AT sambyalss presentstatusandfutureofdccanalysis
AT santor presentstatusandfutureofdccanalysis
AT satos presentstatusandfutureofdccanalysis
AT schlagheckh presentstatusandfutureofdccanalysis
AT schmidthr presentstatusandfutureofdccanalysis
AT shabratovag presentstatusandfutureofdccanalysis
AT sibaryaki presentstatusandfutureofdccanalysis
AT siemiarczukt presentstatusandfutureofdccanalysis
AT sinhabc presentstatusandfutureofdccanalysis
AT slavinn presentstatusandfutureofdccanalysis
AT soderstromk presentstatusandfutureofdccanalysis
AT solomeyn presentstatusandfutureofdccanalysis
AT sorensensp presentstatusandfutureofdccanalysis
AT stankusp presentstatusandfutureofdccanalysis
AT stefanekg presentstatusandfutureofdccanalysis
AT steinbergp presentstatusandfutureofdccanalysis
AT stenlunde presentstatusandfutureofdccanalysis
AT stukend presentstatusandfutureofdccanalysis
AT sumberam presentstatusandfutureofdccanalysis
AT svenssont presentstatusandfutureofdccanalysis
AT trivedimd presentstatusandfutureofdccanalysis
AT tsvetkova presentstatusandfutureofdccanalysis
AT twenhofelc presentstatusandfutureofdccanalysis
AT tykarskil presentstatusandfutureofdccanalysis
AT urbahnj presentstatusandfutureofdccanalysis
AT vaneijndhovenn presentstatusandfutureofdccanalysis
AT vanheeringenwh presentstatusandfutureofdccanalysis
AT vannieuwenhuizengj presentstatusandfutureofdccanalysis
AT vinogradova presentstatusandfutureofdccanalysis
AT viyogiyp presentstatusandfutureofdccanalysis
AT vodopianovas presentstatusandfutureofdccanalysis
AT voross presentstatusandfutureofdccanalysis
AT vosma presentstatusandfutureofdccanalysis
AT wyslouchb presentstatusandfutureofdccanalysis
AT yagik presentstatusandfutureofdccanalysis
AT yokotay presentstatusandfutureofdccanalysis
AT younggr presentstatusandfutureofdccanalysis